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Li X, Liu X, Cai M, Wei S, Wang R, Xu N, Qu J, Wang Y. Investigation of the mechanism of Dan Zhi Qing'e Formula for treating menopausal hot flashes using UHPLC-Q-TOF MS and network pharmacology. NAUNYN-SCHMIEDEBERG'S ARCHIVES OF PHARMACOLOGY 2025:10.1007/s00210-025-04277-7. [PMID: 40434420 DOI: 10.1007/s00210-025-04277-7] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Grants] [Track Full Text] [Subscribe] [Scholar Register] [Received: 11/13/2024] [Accepted: 05/07/2025] [Indexed: 05/29/2025]
Abstract
This study aims to investigate the material basis and underlying mechanisms of action of the Dan Zhi Qing'e Formula in the treatment of menopausal hot flashes. The composition analysis of the Dan Zhi Qing'e Formula was conducted using UHPLC-Q-TOF MS, facilitated by MassLynx V4.1 software. Subsequently, Cytoscape 3.10.1 was employed to merge the data with information from Swiss, GeneCards, and OMIM databases to identify the active components and primary targets. GO and KEGG analyses were performed to elucidate the potential mechanisms of action. Finally, the molecular docking technique was applied to validate the results. A total of 118 components, 73 blood-absorbed components, and 89 potential targets were identified. Seven key targets were obtained, which were aldose reductase (AKR1B1, UniProtKB: P15121), carbonic anhydrase 4 (CA4, UniProtKB: P22748), carbonic anhydrase 2 (CA2, UniProtKB: P00918), acetylcholinesterase (ACHE, UniProtKB: P22303), estrogen receptor beta (ESR2, UniProtKB: Q92731), cytochrome P450 19A1 (CYP19A1, UniProtKB: P11511), and matrix metalloproteinase-2 (MMP2, UniProtKB: P08253). Molecular docking studies indicate that these core components exhibit strong affinity for the identified targets. These targets contribute to the tonic function of the liver and kidneys through hormone response. The findings provide a scientific foundation for further in-depth research into the therapeutic mechanisms of Dan Zhi Qing'e Formula for menopausal hot flashes.
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Affiliation(s)
- Xinyu Li
- School of Chinese Materia Medica, Tianjin University of Traditional Chinese Medicine, No.10 Poyang Lake Road, West Zone Tuanbo New City, Jinghai District, Tianjin, 301617, China
| | - Xinyu Liu
- School of Chinese Materia Medica, Tianjin University of Traditional Chinese Medicine, No.10 Poyang Lake Road, West Zone Tuanbo New City, Jinghai District, Tianjin, 301617, China
| | - Minghui Cai
- First Teaching Hospital of Tianjin University of Traditional Chinese Medicine, NO. 88 Changling Road, Xiqing District, Tianjin, 300381, China
- National Clinical Research Center for Chinese Medicine Acupuncture and Moxibustion, Tianjin, 300193, China
| | - Shuang Wei
- School of Chinese Materia Medica, Tianjin University of Traditional Chinese Medicine, No.10 Poyang Lake Road, West Zone Tuanbo New City, Jinghai District, Tianjin, 301617, China
| | - Rui Wang
- School of Chinese Materia Medica, Tianjin University of Traditional Chinese Medicine, No.10 Poyang Lake Road, West Zone Tuanbo New City, Jinghai District, Tianjin, 301617, China
| | - Nanjian Xu
- Department of Spine Surgery, No.6 Hospital in Ningbo, 1059# Zhongshan East Road, Ningbo, 315040, Zhejiang Province, People's Republic of China.
| | - Jingtian Qu
- First Teaching Hospital of Tianjin University of Traditional Chinese Medicine, NO. 88 Changling Road, Xiqing District, Tianjin, 300381, China.
| | - Yuming Wang
- School of Chinese Materia Medica, Tianjin University of Traditional Chinese Medicine, No.10 Poyang Lake Road, West Zone Tuanbo New City, Jinghai District, Tianjin, 301617, China.
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Khudhur ZO, Smail SW, Awla HK, Ahmed GB, Khdhir YO, Amin K, Janson C. The effects of heavy smoking on oxidative stress, inflammatory biomarkers, vascular dysfunction, and hematological indices. Sci Rep 2025; 15:18251. [PMID: 40415015 DOI: 10.1038/s41598-025-03075-8] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 01/30/2025] [Accepted: 05/19/2025] [Indexed: 05/27/2025] Open
Abstract
Smoking remains a major health issue worldwide, causing various diseases. This research examines the effects of heavy smoking on oxidative stress, inflammatory biomarkers, blood vascular health, and hematological parameters. A study conducted at Par Private Hospital in Erbil, Iraq, from April to May 2024 examined 104 male heavy smokers and 94 healthy male nonsmokers. Blood and biopsy samples were collected from both groups. The groups had similar age and body mass index, reducing the chances of confounding factors. Smokers showed significantly higher levels of oxidative stress markers, including malondialdehyde (p = 0.002) and nitric oxide (p = 0.002), and lower superoxide dismutase activity (p < 0.0001) compared to controls. Smokers displayed significantly elevated levels of serum endothelin-1 and interleukin-8 (p < 0.0001). Immunohistochemical analysis showed a significant rise in myeloperoxidase-positive cells and eosinophilic granule 2-positive eosinophils among smokers, indicating heightened neutrophil and eosinophil activity. Smokers showed elevated neutrophil counts in hematological analysis, while lymphocyte counts and neutrophil-to-lymphocyte ratio remained unchanged. Oxidative stress parameters, endothelin-1 levels, inflammatory biomarkers, and hematological indices are all significantly influenced by heavy smoking, reflecting systemic inflammation and vascular dysfunction. Public health initiatives are urgently required to address the harmful health consequences of smoking, as indicated by noteworthy changes in inflammation and oxidative stress biomarkers. The study offers important information on the physical effects of long-term heavy smoking, enhancing our understanding of the health hazards associated with smoking.
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Affiliation(s)
| | - Shukur Wasman Smail
- Department of Biology, College of Science, Salahaddin University-Erbil, Erbil, Kurdistan Region, Iraq
- College of Pharmacy, Cihan University-Erbil, Erbil, Kurdistan Region, Iraq
| | - Harem Khdir Awla
- Department of Biology, College of Science, Salahaddin University-Erbil, Erbil, Kurdistan Region, Iraq
- Radiological imaging technology Department, College of Health Technology, Cihan University-Erbil, Erbil, Kurdistan Region, Iraq
| | - Gasheen Bakhtiyar Ahmed
- Department of Biology, College of Science, Salahaddin University-Erbil, Erbil, Kurdistan Region, Iraq
| | - Yara Omar Khdhir
- Biology Education Department, Tishk International University, Erbil, Iraq
| | - Kawa Amin
- Department of Medicine, Microbiology/Immunology, College of Medicine, University of Sulaimani, Sulaymaniyah, Iraq
- Department of Medical Science, Respiratory, Allergy and Sleep Research, Uppsala University and University Hospital, Uppsala, Sweden
| | - Christer Janson
- Department of Medical Science, Respiratory, Allergy and Sleep Research, Uppsala University and University Hospital, Uppsala, Sweden.
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Javankiani S, Bolandi S, Soleimani A, Meigoli MSS, Parsafar M, Safaei S, Esmailpour M, Nadimi S, Avval NA, Fazayel SMA, Zahed Z, Sharafi M. MAPK signaling mediates tamoxifen resistance in estrogen receptor-positive breast cancer. Mol Cell Biochem 2025:10.1007/s11010-025-05304-0. [PMID: 40410609 DOI: 10.1007/s11010-025-05304-0] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/22/2025] [Accepted: 05/04/2025] [Indexed: 05/25/2025]
Abstract
Tamoxifen is a cornerstone in the treatment of estrogen receptor (ER)-positive breast cancer, yet resistance to this therapy remains a significant clinical challenge. In most cases, the resistance phenotype is not caused by loss or mutation of the ER, but by changes in multiple proliferative and survival pathways. The mitogen-activated protein kinase (MAPK) signaling pathways regulate various cellular processes such as cell growth, proliferation, and apoptosis. This review provides a comprehensive analysis of molecular mechanisms that sustain MAPK activation and promote tamoxifen resistance. We evaluated molecular factors that promote the survival of tamoxifen-resistant cells through the regulation of MAPK signaling, including growth factors, RNA-binding proteins, non-genomic ER variants, and microRNAs. Mitochondrial dynamics and their regulation by MAPK highlight novel adaptive mechanisms employed by resistant cells to survive. Furthermore, MAPK-mediated phosphorylation of ERα enhances resistance through ligand-independent activation and sustained cellular proliferation. MAPK and parallel oncogenic pathways, including PI3K/AKT and receptor tyrosine kinases (EGFR, IGF-1R, and FGFR), function synergistically to enhance signaling redundancy and compensatory survival mechanisms. Therapeutic interventions targeting MAPK signaling-ranging from small-molecule inhibitors to RNA-based therapies-offer promising avenues for overcoming tamoxifen resistance.
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Affiliation(s)
- Sepide Javankiani
- General Surgery Department, Tehran University of Medical Sciences, Tehran, Iran
- International Surgical Research Association (ISRA), Universal Scientific Education and Research Network (USERN), Tehran, Iran
| | - Soheil Bolandi
- Faculty of Medicine, Shiraz University of Medical Sciences, Shiraz, Iran
| | - Anvar Soleimani
- Department of Medical Microbiology, College of Health Sciences, Cihan University Sulaimaniya, Kurdistan, Sulaimaniya City, Iraq
| | | | - Mahdis Parsafar
- Department of Biomedical Engineering, College of Medical Sciences and Technologies, Tehran Science and Research Branch, Islamic Azad University, Tehran, Iran
| | - Sadaf Safaei
- Department of Pharmaceutical Biotechnology, School of Pharmacy and Pharmaceutical Sciences, Isfahan University of Medical Sciences, Isfahan, Iran
| | - Mojgan Esmailpour
- Faculty of Medicine, Shiraz University of Medical Sciences, Shiraz, Iran
| | - Sogol Nadimi
- Department of Chemistry, University of Bonn, Bonn, Germany
| | | | - Seyed Mohammad Ali Fazayel
- Department of Clinical Medicine, Faculty of Health and Medical Science, University of Copenhagen, Copenhagen, Denmark
| | - Zahra Zahed
- Department of Medical Sciences, Ardabil University of Medical Sciences, Ardabil, Iran.
| | - Malihe Sharafi
- Department of Biology, Faculty of Basic Sciences, Azarbaijan Shahid Madani University, Tabriz, Iran.
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4
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Xu G, Havens CG, Deng Q, Lowenstein C, Samanta D, Vidal B, Behshad E, Russell M, Orth P, Rice CT, Nagilla R, Kirchhoff P, Chen Z, Rej RK, Acharyya RK, Wu D, Wang S, Zhang W, Wu W, Jolivette L, Strickland C, Sui Z, Mohammad HP, Zhang X, Priestley ES. Discovery and Characterization of PVTX-321 as a Potent and Orally Bioavailable Estrogen Receptor Degrader for ER+/HER2- Breast Cancer. J Med Chem 2025. [PMID: 40366756 DOI: 10.1021/acs.jmedchem.5c00223] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 05/16/2025]
Abstract
Estrogen receptor α (ERα) is a key therapeutic target in ER+/HER2- breast cancer, but ESR1 mutations drive resistance to endocrine therapies. Heterobifunctional degraders (HBDs) targeting ERα offer a promising strategy to overcome this resistance. Here, we report PVTX-321 (16a), a potent ER HBD derived from a novel spirocyclic cereblon ligand and an ERα binder. PVTX-321 achieves a DC50 of 0.15 nM in MCF-7 cells and acts as a strong antagonist (IC50 = 59 nM), suppressing proliferation in ERα+ cell lines, including mutant variants (Y537S, D538G). It demonstrates favorable oral bioavailability, dose-dependent ERα degradation in vivo and induces tumor regression at 10 mg/kg (QD) in MCF-7 xenografts. With minimal CYP inhibition and a strong preclinical safety profile, PVTX-321 is a promising candidate for advancing ER+/HER2- breast cancer treatment.
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Affiliation(s)
- Guozhang Xu
- SK Life Science Laboratories, 2500 Renaissance Boulevard, King of Prussia, Pennsylvania 19406, United States
| | - Courtney G Havens
- SK Life Science Laboratories, 2500 Renaissance Boulevard, King of Prussia, Pennsylvania 19406, United States
| | - Qiaolin Deng
- SK Life Science Laboratories, 2500 Renaissance Boulevard, King of Prussia, Pennsylvania 19406, United States
| | - Cassandra Lowenstein
- SK Life Science Laboratories, 2500 Renaissance Boulevard, King of Prussia, Pennsylvania 19406, United States
| | - Debangshu Samanta
- SK Life Science Laboratories, 2500 Renaissance Boulevard, King of Prussia, Pennsylvania 19406, United States
| | - Brian Vidal
- SK Life Science Laboratories, 2500 Renaissance Boulevard, King of Prussia, Pennsylvania 19406, United States
| | - Elham Behshad
- SK Life Science Laboratories, 2500 Renaissance Boulevard, King of Prussia, Pennsylvania 19406, United States
| | - Mike Russell
- SK Life Science Laboratories, 2500 Renaissance Boulevard, King of Prussia, Pennsylvania 19406, United States
| | - Peter Orth
- SK Life Science Laboratories, 2500 Renaissance Boulevard, King of Prussia, Pennsylvania 19406, United States
| | - Cory T Rice
- SK Life Science Laboratories, 2500 Renaissance Boulevard, King of Prussia, Pennsylvania 19406, United States
| | - Rakesh Nagilla
- SK Life Science Laboratories, 2500 Renaissance Boulevard, King of Prussia, Pennsylvania 19406, United States
| | - Paul Kirchhoff
- The Rogel Cancer Center, Department of Internal Medicine, Department of Pharmacology, and Department of Medicinal Chemistry, University of Michigan, Ann Arbor, Michigan 48109, United States
| | - Zhixiang Chen
- The Rogel Cancer Center, Department of Internal Medicine, Department of Pharmacology, and Department of Medicinal Chemistry, University of Michigan, Ann Arbor, Michigan 48109, United States
| | - Rohan Kalyan Rej
- The Rogel Cancer Center, Department of Internal Medicine, Department of Pharmacology, and Department of Medicinal Chemistry, University of Michigan, Ann Arbor, Michigan 48109, United States
| | - Ranjan Kumar Acharyya
- The Rogel Cancer Center, Department of Internal Medicine, Department of Pharmacology, and Department of Medicinal Chemistry, University of Michigan, Ann Arbor, Michigan 48109, United States
| | - Dimin Wu
- The Rogel Cancer Center, Department of Internal Medicine, Department of Pharmacology, and Department of Medicinal Chemistry, University of Michigan, Ann Arbor, Michigan 48109, United States
| | - Shaomeng Wang
- The Rogel Cancer Center, Department of Internal Medicine, Department of Pharmacology, and Department of Medicinal Chemistry, University of Michigan, Ann Arbor, Michigan 48109, United States
| | - Weihong Zhang
- SK Life Science Laboratories, 2500 Renaissance Boulevard, King of Prussia, Pennsylvania 19406, United States
| | - Wenxue Wu
- SK Life Science Laboratories, 2500 Renaissance Boulevard, King of Prussia, Pennsylvania 19406, United States
| | - Larry Jolivette
- SK Life Science Laboratories, 2500 Renaissance Boulevard, King of Prussia, Pennsylvania 19406, United States
| | - Corey Strickland
- SK Life Science Laboratories, 2500 Renaissance Boulevard, King of Prussia, Pennsylvania 19406, United States
| | - Zhihua Sui
- SK Life Science Laboratories, 2500 Renaissance Boulevard, King of Prussia, Pennsylvania 19406, United States
| | - Helai P Mohammad
- SK Life Science Laboratories, 2500 Renaissance Boulevard, King of Prussia, Pennsylvania 19406, United States
| | - Xuqing Zhang
- SK Life Science Laboratories, 2500 Renaissance Boulevard, King of Prussia, Pennsylvania 19406, United States
| | - E Scott Priestley
- SK Life Science Laboratories, 2500 Renaissance Boulevard, King of Prussia, Pennsylvania 19406, United States
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5
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Smolarz B, Biernacka K, Łukasiewicz H, Samulak D, Piekarska E, Romanowicz H, Makowska M. Ovarian Cancer-Epidemiology, Classification, Pathogenesis, Treatment, and Estrogen Receptors' Molecular Backgrounds. Int J Mol Sci 2025; 26:4611. [PMID: 40429755 PMCID: PMC12111435 DOI: 10.3390/ijms26104611] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/20/2025] [Revised: 05/08/2025] [Accepted: 05/08/2025] [Indexed: 05/29/2025] Open
Abstract
Global epidemiological reports indicate a steady increase in the tendency to develop ovarian cancer. The symptoms of ovarian cancer are non-specific, and there is no effective screening tool. Most often, surgery, chemotherapy, and radiotherapy, alone or in combination, are used to treat ovarian cancer. We have a better understanding of the biology of ovarian cancer, the genetic basis of hereditary ovarian cancer, the stage of the disease, and the role of cytoreductive surgery and more effective chemotherapy, which translates into an increase in the percentage of patients who survive 5 years after diagnosis. A growing body of evidence points to the role of genetic factors in the development of cancer. It is known that mutations in the BRCA1 gene are responsible for an increased risk of developing ovarian cancer. The role of other genetic disorders, such as polymorphic variants, in increasing the risk of developing cancer is still being investigated. Ovarian cancer is a hormone-dependent cancer and its steroid hormones are estrogens. Estrogens affect cells through the estrogen receptors ERα and ERβ. An imbalance between ERα and ERβ receptor expression may, therefore, be a key step in estrogen-dependent carcinogenesis. In 60% of cancer cases, significantly elevated levels of ERα receptors are detected. The ERα receptor is encoded by the ESR1 gene, so its polymorphisms can be considered molecular markers of ovarian cancer. This article discusses the epidemiology, pathogenesis, risk factors, genetic testing, treatment, and diagnosis of ovarian cancer, as well as providing an overview of standard treatment approaches and new, targeted biologic therapies.
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Affiliation(s)
- Beata Smolarz
- Laboratory of Cancer Genetics, Department of Pathology, Polish Mother’s Memorial Hospital Research Institute, Rzgowska 281/289, 93-338 Lodz, Poland; (K.B.); (H.R.)
| | - Karolina Biernacka
- Laboratory of Cancer Genetics, Department of Pathology, Polish Mother’s Memorial Hospital Research Institute, Rzgowska 281/289, 93-338 Lodz, Poland; (K.B.); (H.R.)
| | - Honorata Łukasiewicz
- Faculty of Medicine and Health Sciences, Department of Nursing, The President Stanisław Wojciechowski Calisia University, 62-800 Kalisz, Poland;
| | - Dariusz Samulak
- Department of Obstetrics and Gynecology and Gynecological Oncology, Regional Hospital in Kalisz, 62-800 Kalisz, Poland;
- Department of Obstetrics, The President Stanisław Wojciechowski Calisia University, 62-800 Kalisz, Poland
| | | | - Hanna Romanowicz
- Laboratory of Cancer Genetics, Department of Pathology, Polish Mother’s Memorial Hospital Research Institute, Rzgowska 281/289, 93-338 Lodz, Poland; (K.B.); (H.R.)
| | - Marianna Makowska
- Department of Anesthesiology and Operative Intensive Care Medicine, Charité-Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin, Humboldt-Universität zu Berlin, 10117 Berlin, Germany;
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6
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Li Y, Ouyang Q, Chen Z, Zhou D, Li Z, Yang X, Long J, Chen G, Li X, Jia S, Zi H, Qi S, Tang H, Zhang B, Niu Y, Xu A, Tong W, Jia J, Huang J. Novel role of general transcript factor IIH subunit 2 (GTF2H2) in the development and sex disparity of hepatocellular carcinoma. Oncogene 2025; 44:1323-1335. [PMID: 39972070 DOI: 10.1038/s41388-025-03301-7] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 07/25/2024] [Revised: 01/13/2025] [Accepted: 02/04/2025] [Indexed: 02/21/2025]
Abstract
Sex disparity is a hepatocellular carcinoma (HCC) hallmark, demonstrating aggressiveness and mortality more frequently in men than in women. However, the components of its basis remain largely unknown. It was identified in HCC frequent loss of heterozygosity of general transcript factor IIH subunit 2 (GTF2H2), a potential estrogen pathway gene. GTF2H2 functions in nucleotide excision repair (NER) and basal transcription, but the function of GTF2H2 in cancer has not been described in depth. Here, it was identified that GTF2H2 inhibited growth and invasive mobility and induced apoptosis of HCC cells, which was up-regulated by estrogen-dependent estrogen receptor alpha (ERα) signaling. Mechanistically, in vitro estrogen-treated HCC models with GTF2H2 knockdown and over-expression showed estrogen-regulated GTF2H2 promoted NER of HCC genomic DNA and inhibited cell cycle progression, and down-regulated PAM/NF-κB pathway. Xenografted HCC mice models showed higher tumor progression of HCC with low GTF2H2 expression in ovariectomized female mice or male mice, but could be rescued by GTF2H2 over-expression, which was also observed in spontaneous tumor mice models. Clinical association analysis of HCC cases showed GTF2H2 expression was higher in female HCC, with correlation positively with ERα expression. Taken together, the estrogen-regulated GTF2H2 may be involved in the development and sex disparity of HCC by maintaining NER-related genomic stability and affecting PAM/NF-κB signaling pathway.
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Affiliation(s)
- Yanmeng Li
- Laboratory of Molecular Biology, Beijing Institute of Clinical Medicine, Beijing Friendship Hospital, Capital Medical University, Beijing, 100050, China
- Liver Research Center, Beijing Friendship Hospital, Capital Medical University; Beijing Key Laboratory of Translational Medicine on Liver Cirrhosis, Beijing, 100050, China
- National Clinical Research Center for Digestive Disease, Beijing Friendship Hospital, Capital Medical University, Beijing, China
| | - Qin Ouyang
- Laboratory of Molecular Biology, Beijing Institute of Clinical Medicine, Beijing Friendship Hospital, Capital Medical University, Beijing, 100050, China
- National Clinical Research Center for Digestive Disease, Beijing Friendship Hospital, Capital Medical University, Beijing, China
| | - Zhibin Chen
- Laboratory of Molecular Biology, Beijing Institute of Clinical Medicine, Beijing Friendship Hospital, Capital Medical University, Beijing, 100050, China
- Central Laboratory, Hainan General Hospital, Hainan Affiliated Hospital of Hainan Medical University, Haikou, China
| | - Donghu Zhou
- Laboratory of Molecular Biology, Beijing Institute of Clinical Medicine, Beijing Friendship Hospital, Capital Medical University, Beijing, 100050, China
- National Clinical Research Center for Digestive Disease, Beijing Friendship Hospital, Capital Medical University, Beijing, China
| | - Zhenkun Li
- Laboratory of Molecular Biology, Beijing Institute of Clinical Medicine, Beijing Friendship Hospital, Capital Medical University, Beijing, 100050, China
- National Clinical Research Center for Digestive Disease, Beijing Friendship Hospital, Capital Medical University, Beijing, China
| | - Xiaoxi Yang
- Clinical Research Center, Beijing Children Hospital, Capital Medical University, Beijing, China
| | - Jiang Long
- Department of Oncology Minimally Invasive Interventional Radiology, Beijing You-an Hospital, Capital Medical University, Beijing, China
| | - Guangyong Chen
- Department of Pathology, Beijing Friendship Hospital, Capital Medical University, Beijing, China
| | - Xiaojin Li
- Laboratory of Molecular Biology, Beijing Institute of Clinical Medicine, Beijing Friendship Hospital, Capital Medical University, Beijing, 100050, China
- National Clinical Research Center for Digestive Disease, Beijing Friendship Hospital, Capital Medical University, Beijing, China
| | - Siyu Jia
- Laboratory of Molecular Biology, Beijing Institute of Clinical Medicine, Beijing Friendship Hospital, Capital Medical University, Beijing, 100050, China
- National Clinical Research Center for Digestive Disease, Beijing Friendship Hospital, Capital Medical University, Beijing, China
| | - Huaduan Zi
- Laboratory of Molecular Biology, Beijing Institute of Clinical Medicine, Beijing Friendship Hospital, Capital Medical University, Beijing, 100050, China
- National Clinical Research Center for Digestive Disease, Beijing Friendship Hospital, Capital Medical University, Beijing, China
| | - Saiping Qi
- Laboratory of Molecular Biology, Beijing Institute of Clinical Medicine, Beijing Friendship Hospital, Capital Medical University, Beijing, 100050, China
- National Clinical Research Center for Digestive Disease, Beijing Friendship Hospital, Capital Medical University, Beijing, China
| | - Hengcheng Tang
- Laboratory of Molecular Biology, Beijing Institute of Clinical Medicine, Beijing Friendship Hospital, Capital Medical University, Beijing, 100050, China
- National Clinical Research Center for Digestive Disease, Beijing Friendship Hospital, Capital Medical University, Beijing, China
| | - Bei Zhang
- Laboratory of Molecular Biology, Beijing Institute of Clinical Medicine, Beijing Friendship Hospital, Capital Medical University, Beijing, 100050, China
- National Clinical Research Center for Digestive Disease, Beijing Friendship Hospital, Capital Medical University, Beijing, China
| | - Yamei Niu
- Department of Pathology, Institute of Basic Medical Sciences Chinese Academy of Medical Science, School of Basic Medicine Peking Union Medical College, Beijing, China
| | - Anjian Xu
- Laboratory of Molecular Biology, Beijing Institute of Clinical Medicine, Beijing Friendship Hospital, Capital Medical University, Beijing, 100050, China.
- National Clinical Research Center for Digestive Disease, Beijing Friendship Hospital, Capital Medical University, Beijing, China.
| | - Weimin Tong
- Department of Pathology, Institute of Basic Medical Sciences Chinese Academy of Medical Science, School of Basic Medicine Peking Union Medical College, Beijing, China.
| | - Jidong Jia
- Liver Research Center, Beijing Friendship Hospital, Capital Medical University; Beijing Key Laboratory of Translational Medicine on Liver Cirrhosis, Beijing, 100050, China.
- National Clinical Research Center for Digestive Disease, Beijing Friendship Hospital, Capital Medical University, Beijing, China.
| | - Jian Huang
- Laboratory of Molecular Biology, Beijing Institute of Clinical Medicine, Beijing Friendship Hospital, Capital Medical University, Beijing, 100050, China.
- National Clinical Research Center for Digestive Disease, Beijing Friendship Hospital, Capital Medical University, Beijing, China.
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7
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Hamilton EP, Jeselsohn RM, Vahdat LT, Hurvitz SA. PROteolysis TArgeting Chimera (PROTAC) Estrogen Receptor Degraders for Treatment of Estrogen Receptor-Positive Advanced Breast Cancer. Target Oncol 2025; 20:431-444. [PMID: 40327300 DOI: 10.1007/s11523-025-01137-5] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Accepted: 02/18/2025] [Indexed: 05/07/2025]
Abstract
The estrogen receptor (ER) signaling pathway is a key driver of breast cancer, primarily through the activation of genes that promote tumor cell survival and growth. The recommended first-line treatment for ER-positive (ER+)/human epidermal growth factor receptor 2-negative (HER2-) advanced or metastatic breast cancer is endocrine therapy plus a cyclin-dependent kinase 4/6 (CDK4/6) inhibitor. However, most patients experience disease progression, and there is no clear standard of care in the second-line setting. Thus, novel treatments in the advanced setting are needed. In this narrative review, we describe the unique mechanisms of action of a new class of drugs called PROteolysis TArgeting Chimera (PROTAC) ER degraders. Unlike other ER-targeted therapies, these small molecules harness the body's primary intracellular natural protein disposal machinery, the ubiquitin-proteasome system, to directly induce ER degradation. Vepdegestrant (ARV-471) is the furthest advanced PROTAC ER degrader currently in clinical development. Preclinical data demonstrate increased tumor growth inhibition with vepdegestrant alone or in combination with CDK4/6 inhibitors compared with the selective ER degrader fulvestrant. In a first-in-human phase 1/2 clinical study, vepdegestrant administered orally as monotherapy or in combination with palbociclib showed promising clinical activity and a favorable safety profile in patients with heavily pretreated ER+/HER2- advanced breast cancer. Several other PROTAC ER degraders (AC699, ERD-3111, ERD-4001, and HP568) are in early development and have demonstrated activity in preclinical breast cancer models, with some recently entering clinical trials. The data highlight the potential for PROTAC ER degraders to be a new backbone therapy in breast cancer.
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Affiliation(s)
- Erika P Hamilton
- Breast Cancer Research Program, Sarah Cannon Research Institute, 335 24th Avenue North, Suite 300, Nashville, TN, 37203, USA.
| | | | - Linda T Vahdat
- Hematology/Oncology, Dartmouth Cancer Center, Lebanon, NH, USA
- Department of Medicine, Geisel School of Medicine, Dartmouth College, Hanover, NH, USA
| | - Sara A Hurvitz
- Division of Hematology Oncology, Department of Medicine, UW Medicine, Seattle, WA, USA
- Clinical Research Division, Fred Hutchinson Cancer Center, Seattle, WA, USA
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Dong X, Liu H, Yuan D, Gulati K, Liu Y. Re-engineering bone: pathogenesis, diagnosis and emerging therapies for osteoporosis. J Mater Chem B 2025; 13:4938-4963. [PMID: 40192254 DOI: 10.1039/d4tb02628d] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 05/02/2025]
Abstract
Osteoporosis, a multifaceted metabolic bone disease, is becoming increasingly prevalent and poses a significant burden on global healthcare systems. Given the limitations of traditional treatments such as pharmacotherapy, tissue engineering has emerged as a promising alternative for osteoporosis management. This review begins by exploring the pathogenesis of osteoporosis, with a focus on the abnormal metabolic, cellular, and molecular signalling microenvironments that drive the disease. We also examine commonly used clinical diagnostic techniques, discussing their strengths and limitations. Notably, this review evaluates various advanced tissue engineering strategies for osteoporosis treatment. Delivery systems, including injectable hydrogels and nanomaterials, are detailed alongside bone tissue engineering materials such as bioactive ceramics, bone cements, and polymers. Additionally, biologically active substances, including exosomes and cytokines, and emerging therapies that leverage small-molecule drugs are explored. Through a comprehensive analysis of the advantages and limitations of current biomaterials and therapeutic approaches, this review provides insights into future directions for tissue engineering-based solutions. By synthesizing current advancements, it aims to inspire innovative perspectives for the clinical management of osteoporosis.
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Affiliation(s)
- Xinyi Dong
- Central Laboratory, Peking University School and Hospital of Stomatology, Beijing 100081, China.
- National Center for Stomatology & National Engineering Research Center of Oral Biomaterials and Digital Medical Devices Beijing Key Laboratory of Digital Stomatology & Translational Research Center for Oro-craniofacial Stem Cells and Systemic Health, Beijing 100081, China
| | - Hao Liu
- Central Laboratory, Peking University School and Hospital of Stomatology, Beijing 100081, China.
- National Center for Stomatology & National Engineering Research Center of Oral Biomaterials and Digital Medical Devices Beijing Key Laboratory of Digital Stomatology & Translational Research Center for Oro-craniofacial Stem Cells and Systemic Health, Beijing 100081, China
| | - Dian Yuan
- Hubei University of Science and Technology, School of Dentistry and Optometry, Xianning 430030, China
| | - Karan Gulati
- School of Dentistry, The University of Queensland, Herston, QLD, 4006, Australia.
- Centre for Orofacial Regeneration, Reconstruction and Rehabilitation (COR3), Herston, QLD 4006, Australia
| | - Yan Liu
- Central Laboratory, Peking University School and Hospital of Stomatology, Beijing 100081, China.
- Centre for Orofacial Regeneration, Reconstruction and Rehabilitation (COR3), Herston, QLD 4006, Australia
- Department of Orthodontics, Peking University School and Hospital of Stomatology, Beijing 100081, China
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Bentall L, Parr‐Brownlie L. Sexual Dimorphism in Levodopa-Induced Dyskinesia Following Parkinson's Disease: Uncharted Territory. Eur J Neurosci 2025; 61:e70144. [PMID: 40360439 PMCID: PMC12075048 DOI: 10.1111/ejn.70144] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/23/2024] [Revised: 04/12/2025] [Accepted: 05/01/2025] [Indexed: 05/15/2025]
Abstract
Sexual dimorphism is well-documented in Parkinson's disease (PD); however, when it comes to levodopa-induced dyskinesia (LID), epidemiological and clinical findings are scarce. This is an oversight because recent studies show significant correlations between LID risk and female sex. Estrogen strongly impacts neuronal function, affecting cognitive tasks such as movement, object recognition, and reward. In movement pathways, estrogen increases dopamine synthesis, transmission, and regulation, resulting in neuroprotection for PD in women. However, following menopause, PD prevalence, symptom severity, and LID risk increase for women. Consequently, early to mid-life estrogen state is neuroprotective, but later in life becomes a risk factor for PD and LID. This review explores estrogen's action in the brain, specifically within the dopamine system. Sexual dimorphism is described for the prevalence and onset of PD and LID. We examine the cellular basis of estrogen's role in sexual dimorphism and integrate these ideas to hypothesize why the risk for LID is higher for women, than men, with PD. Lastly, this review proposes that women with PD need their symptoms to be considered and managed differently to males. Treatment of women with PD should be based on their menopausal stage, as estrogen may be masking, exacerbating, or complicating symptoms. Importantly, we present these concepts to stimulate discussion among clinical and bench scientists so that key experiments can be conducted to examine the mechanisms underlying LID, so they can be prevented to improve the quality of life for women and men living with PD in the future.
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Hadjadj I, Fabova Z, García ML, Agea I, Loncová B, Morovic M, Makovicky P, Argente MJ, Sirotkin AV. Food Restriction Induces Changes in Ovarian Folliculogenesis, Cell Proliferation, Apoptosis, and Production of Regulatory Peptides in Rabbits. Animals (Basel) 2025; 15:1282. [PMID: 40362096 PMCID: PMC12071153 DOI: 10.3390/ani15091282] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/22/2025] [Revised: 03/28/2025] [Accepted: 04/25/2025] [Indexed: 05/15/2025] Open
Abstract
The aim of this study is to examine the influence of food restriction on rabbit ovarian functions. A total of eight females were fed ad libitum (NF), while eight females were subjected to 50% food restriction (RF). One month later, all females were euthanized. Weights and lengths of ovaries and uterine horns were measured. Representative parts of the ovaries were subjected to histomorphometry analysis of folliculogenesis. Granulosa cells were isolated and cell viability, proliferation (accumulation of PCNA, cyclin B1, and BrdU-positive cells), apoptosis (accumulation of bax, caspase 3, and DNA fragmentation) were evaluated. Granulosa cells were subjected to proteomic analysis by using the nano HPLC-Chip-MS/MS method. Estradiol and progesterone release by ovarian and granulosa cells was assessed by ELISA. Ovarian and uterine horn weights were lower in RF than NF. The diameter of follicles and oocytes and the thickness of the theca and granulosa cells were higher in RF than NF. RF showed a lower percentage of cells containing bax and caspase 3, occurrence of DNA fragmented cells, and estradiol and progesterone. RF had higher incorporation of BrdU, a higher proportion of cells containing PCNA and cyclin B1, and a lower percentage of viable cells. RF produced more specific proteins than NF, including peptides involved in cell differentiation, proliferation/division, mitotic cell cycle, and GTP-ase activity. In conclusion, food restriction can activate reproduction by (1) selection of the growing primordial follicles, (2) better transformation of secondary to preovulatory follicles, (3) increasing growth of oocytes, (4) increasing proliferation and decreasing apoptosis in granulosa cells, (5) changes in ovarian secretory activity, and (6) changes in the number of peptides.
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Affiliation(s)
- Imane Hadjadj
- Instituto de Investigación e Innovación Agroalimentario y Agroambiental (CIAGRO), Universidad Miguel Hernández de Elche, Ctra de Beniel Km 3.2, 03312 Orihuela, Spain; (I.H.); (I.A.); (M.-J.A.)
| | - Zuzana Fabova
- Department of Zoology and Anthropology, Constantine the Philosopher University, Tr. A 14 Hlinku 1, 949 74 Nitra, Slovakia (M.M.); (A.V.S.)
| | - María-Luz García
- Instituto de Investigación e Innovación Agroalimentario y Agroambiental (CIAGRO), Universidad Miguel Hernández de Elche, Ctra de Beniel Km 3.2, 03312 Orihuela, Spain; (I.H.); (I.A.); (M.-J.A.)
| | - Iván Agea
- Instituto de Investigación e Innovación Agroalimentario y Agroambiental (CIAGRO), Universidad Miguel Hernández de Elche, Ctra de Beniel Km 3.2, 03312 Orihuela, Spain; (I.H.); (I.A.); (M.-J.A.)
| | - Barbora Loncová
- Department of Zoology and Anthropology, Constantine the Philosopher University, Tr. A 14 Hlinku 1, 949 74 Nitra, Slovakia (M.M.); (A.V.S.)
| | - Martin Morovic
- Department of Zoology and Anthropology, Constantine the Philosopher University, Tr. A 14 Hlinku 1, 949 74 Nitra, Slovakia (M.M.); (A.V.S.)
| | - Peter Makovicky
- Department of Histology and Embryology, Faculty of Medicine, University of Ostrava, Dvořákova 138/7, 701 03 Ostrava, Czech Republic;
- Research Institute, Biomedical Research Centre of the Slovak Academy of Sciences, Dúbravská cesta 9, 814 39 Bratislava, Slovakia
| | - María-José Argente
- Instituto de Investigación e Innovación Agroalimentario y Agroambiental (CIAGRO), Universidad Miguel Hernández de Elche, Ctra de Beniel Km 3.2, 03312 Orihuela, Spain; (I.H.); (I.A.); (M.-J.A.)
| | - Alexander V. Sirotkin
- Department of Zoology and Anthropology, Constantine the Philosopher University, Tr. A 14 Hlinku 1, 949 74 Nitra, Slovakia (M.M.); (A.V.S.)
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de Melo BP, da Silva JAM, Rodrigues MA, Palmeira JDF, Amato AA, Argañaraz GA, Argañaraz ER. SARS-CoV-2 Spike Protein and Long COVID-Part 2: Understanding the Impact of Spike Protein and Cellular Receptor Interactions on the Pathophysiology of Long COVID Syndrome. Viruses 2025; 17:619. [PMID: 40431631 PMCID: PMC12115913 DOI: 10.3390/v17050619] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/28/2025] [Revised: 04/06/2025] [Accepted: 04/23/2025] [Indexed: 05/29/2025] Open
Abstract
SARS-CoV-2 infection has had a significant impact on global health through both acute illness, referred to as coronavirus disease 2019 (COVID-19), and chronic conditions (long COVID or post-acute sequelae of COVID-19, PASC). Despite substantial advancements in preventing severe COVID-19 cases through vaccination, the rise in the prevalence of long COVID syndrome and a notable degree of genomic mutation, primarily in the S protein, underscores the necessity for a deeper understanding of the underlying pathophysiological mechanisms related to the S protein of SARS-CoV-2. In this review, the latest part of this series, we investigate the potential pathophysiological molecular mechanisms triggered by the interaction between the spike protein and cellular receptors. Therefore, this review aims to provide a differential and focused view on the mechanisms potentially activated by the binding of the spike protein to canonical and non-canonical receptors for SARS-CoV-2, together with their possible interactions and effects on the pathogenesis of long COVID.
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Affiliation(s)
- Bruno Pereira de Melo
- Laboratory of Molecular Neurovirology, Department of Pharmacy, Faculty of Health Science, University of Brasília, Brasília 70910-900, DF, Brazil
| | - Jhéssica Adriane Mello da Silva
- Laboratory of Molecular Neurovirology, Department of Pharmacy, Faculty of Health Science, University of Brasília, Brasília 70910-900, DF, Brazil
| | - Mariana Alves Rodrigues
- Laboratory of Molecular Neurovirology, Department of Pharmacy, Faculty of Health Science, University of Brasília, Brasília 70910-900, DF, Brazil
| | - Julys da Fonseca Palmeira
- Laboratory of Molecular Neurovirology, Department of Pharmacy, Faculty of Health Science, University of Brasília, Brasília 70910-900, DF, Brazil
| | - Angélica Amorim Amato
- Laboratory of Molecular Pharmacology, Faculty of Health Science, University of Brasília, Brasilia 70910-900, DF, Brazil
| | - Gustavo Adolfo Argañaraz
- Laboratory of Molecular Neurovirology, Department of Pharmacy, Faculty of Health Science, University of Brasília, Brasília 70910-900, DF, Brazil
| | - Enrique Roberto Argañaraz
- Laboratory of Molecular Neurovirology, Department of Pharmacy, Faculty of Health Science, University of Brasília, Brasília 70910-900, DF, Brazil
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12
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Liu Y, Wang R, Han B, Zhu B, Ma Y, Yu Y, Bai L, Wei Q, Yang P. GPER1-mediated suppression of acute cellular rejection in murine cervical heart transplantation by estradiol. J Cardiothorac Surg 2025; 20:208. [PMID: 40247327 PMCID: PMC12004865 DOI: 10.1186/s13019-025-03432-8] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/11/2024] [Accepted: 04/06/2025] [Indexed: 04/19/2025] Open
Abstract
OBJECTIVE This study aimed to investigate the inhibitory effect of estradiol (E2) on acute cellular rejection following murine cervical heart transplantation and the role of G protein-coupled estrogen receptor 1 (GPER1). METHOD A murine cervical heart transplantation model was established and categorized into four groups: syngeneic group (C57BL/6 to C57BL/6), allogenic control group (BALB/c to C57BL/6), E2 group (BALB/c to C57BL/6), and E2 + G15 group (G15: one of GPER1 blocker) (BALB/c to C57BL/6). Survival time, pathological rejection grade, intimal hyperplasia area of coronary artery in donor heart, mRNA expression levels of TGF-β, IL-10, and Foxp3 in spleen, and protein expression levels of CD4 and CD25 in spleen membrane proteins, were compared among these groups. RESULTS The syngeneic group showed 100% survival, while survival in the allogenic control group was significantly reduced. E2 treatment prolonged survival compared to the allogenic control group, but survival decreased with the addition of E2 + G15. Rejection was reduced in the E2 group compared to the allogenic control group, whereas the E2 + G15 group exhibited increased rejection compared to the E2 group. Intimal hyperplasia was absent in the syngeneic group, significant in the allogenic control group, reduced in the E2 group compared to the allogenic control group, but greater in the E2 + G15 group compared to the E2 group. The expression of IL-10, Foxp3, and TGF-β in the allogenic control group was higher than in the syngeneic group. In the E2 group, IL-10, Foxp3, and CD25 were higher than in the allogenic control group, while TGF-β and CD4 expression were lower. The E2 + G15 group had lower IL-10, Foxp3, and CD25 expression but higher TGF-β expression than the E2 group. CONCLUSION Severe acute cellular rejection was observed following murine cervical heart transplantation. E2 suppresses acute rejection by enhancing Treg cell expression, mediated by GPER1.
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Affiliation(s)
- Yiwei Liu
- Department of Thoracic Surgery, Peking University Cancer Hospital Inner Mongolia Hospital & Inner Mongolia Medical University Affiliated Cancer Hospital, 42 Zhaowuda Road, Saihan District, Huhhot, Inner Mongolia Autonomous Region, 010020, China
- Department of Cardiothoracic Surgery, Jincheng People's Hospital, Jincheng, Shanxi, 048000, China
| | - Ran Wang
- Department of Cardiovascular Medicine, The First People's Hospital of Horqin District, Tongliao, Inner Mongolia Autonomous Region, 028000, China
| | - Bater Han
- Department of Thoracic Surgery, Peking University Cancer Hospital Inner Mongolia Hospital & Inner Mongolia Medical University Affiliated Cancer Hospital, 42 Zhaowuda Road, Saihan District, Huhhot, Inner Mongolia Autonomous Region, 010020, China
| | - Benben Zhu
- Department of Thoracic Surgery, Peking University Cancer Hospital Inner Mongolia Hospital & Inner Mongolia Medical University Affiliated Cancer Hospital, 42 Zhaowuda Road, Saihan District, Huhhot, Inner Mongolia Autonomous Region, 010020, China
| | - Yu Ma
- Department of Thoracic Surgery, Peking University Cancer Hospital Inner Mongolia Hospital & Inner Mongolia Medical University Affiliated Cancer Hospital, 42 Zhaowuda Road, Saihan District, Huhhot, Inner Mongolia Autonomous Region, 010020, China
| | - Yongjun Yu
- Department of Thoracic Surgery, Peking University Cancer Hospital Inner Mongolia Hospital & Inner Mongolia Medical University Affiliated Cancer Hospital, 42 Zhaowuda Road, Saihan District, Huhhot, Inner Mongolia Autonomous Region, 010020, China
| | - Lu Bai
- Department of Thoracic Surgery, Peking University Cancer Hospital Inner Mongolia Hospital & Inner Mongolia Medical University Affiliated Cancer Hospital, 42 Zhaowuda Road, Saihan District, Huhhot, Inner Mongolia Autonomous Region, 010020, China
| | - Qiyou Wei
- Department of Thoracic Surgery, Peking University Cancer Hospital Inner Mongolia Hospital & Inner Mongolia Medical University Affiliated Cancer Hospital, 42 Zhaowuda Road, Saihan District, Huhhot, Inner Mongolia Autonomous Region, 010020, China.
| | - Pengjie Yang
- Department of Thoracic Surgery, Peking University Cancer Hospital Inner Mongolia Hospital & Inner Mongolia Medical University Affiliated Cancer Hospital, 42 Zhaowuda Road, Saihan District, Huhhot, Inner Mongolia Autonomous Region, 010020, China.
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13
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Wang X, Feng S, Deng Q, Wu C, Duan R, Yang L. The role of estrogen in Alzheimer's disease pathogenesis and therapeutic potential in women. Mol Cell Biochem 2025; 480:1983-1998. [PMID: 39088186 DOI: 10.1007/s11010-024-05071-4] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/11/2024] [Accepted: 07/11/2024] [Indexed: 08/02/2024]
Abstract
Estrogens are pivotal regulators of brain function throughout the lifespan, exerting profound effects from early embryonic development to aging. Extensive experimental evidence underscores the multifaceted protective roles of estrogens on neurons and neurotransmitter systems, particularly in the context of Alzheimer's disease (AD) pathogenesis. Studies have consistently revealed a greater risk of AD development in women compared to men, with postmenopausal women exhibiting heightened susceptibility. This connection between sex factors and long-term estrogen deprivation highlights the significance of estrogen signaling in AD progression. Estrogen's influence extends to key processes implicated in AD, including amyloid precursor protein (APP) processing and neuronal health maintenance mediated by brain-derived neurotrophic factor (BDNF). Reduced BDNF expression, often observed in AD, underscores estrogen's role in preserving neuronal integrity. Notably, hormone replacement therapy (HRT) has emerged as a sex-specific and time-dependent strategy for primary cardiovascular disease (CVD) prevention, offering an excellent risk profile against aging-related disorders like AD. Evidence suggests that HRT may mitigate AD onset and progression in postmenopausal women, further emphasizing the importance of estrogen signaling in AD pathophysiology. This review comprehensively examines the physiological and pathological changes associated with estrogen in AD, elucidating the therapeutic potential of estrogen-based interventions such as HRT. By synthesizing current knowledge, it aims to provide insights into the intricate interplay between estrogen signaling and AD pathogenesis, thereby informing future research directions and therapeutic strategies for this debilitating neurodegenerative disorder.
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Affiliation(s)
- Xinyi Wang
- Laboratory of Exercise and Neurobiology, School of Physical Education and Sports Science, South China Normal University, Guangzhou, 510006, China
| | - Shu Feng
- Laboratory of Exercise and Neurobiology, School of Physical Education and Sports Science, South China Normal University, Guangzhou, 510006, China
| | - Qianting Deng
- Laboratory of Exercise and Neurobiology, School of Physical Education and Sports Science, South China Normal University, Guangzhou, 510006, China
| | - Chongyun Wu
- Laboratory of Exercise and Neurobiology, School of Physical Education and Sports Science, South China Normal University, Guangzhou, 510006, China.
- Laboratory of Regenerative Medicine in Sports Science, School of Physical Education and Sports Science, South China Normal University, Guangzhou, China.
| | - Rui Duan
- Laboratory of Regenerative Medicine in Sports Science, School of Physical Education and Sports Science, South China Normal University, Guangzhou, China
| | - Luodan Yang
- Laboratory of Exercise and Neurobiology, School of Physical Education and Sports Science, South China Normal University, Guangzhou, 510006, China.
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Kim N. Tailoring Treatment: The Role of Sex/Gender-Specific Medicine. World J Mens Health 2025; 43:259-264. [PMID: 39028132 PMCID: PMC11937359 DOI: 10.5534/wjmh.240123] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/18/2024] [Accepted: 05/20/2024] [Indexed: 07/20/2024] Open
Affiliation(s)
- Nayoung Kim
- Department of Internal Medicine, Seoul National University Bundang Hospital, Seongnam, Korea
- Research Center for Sex- and Gender-Specific Medicine, Seoul National University Bundang Hospital, Seongnam, Korea
- Department of Internal Medicine and Liver Research Institute, Seoul National University College of Medicine, Seoul, Korea.
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15
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Naoi M, Wu Y, Maruyama W, Shamoto-Nagai M. Phytochemicals Modulate Biosynthesis and Function of Serotonin, Dopamine, and Norepinephrine for Treatment of Monoamine Neurotransmission-Related Psychiatric Diseases. Int J Mol Sci 2025; 26:2916. [PMID: 40243512 PMCID: PMC11988947 DOI: 10.3390/ijms26072916] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 01/12/2025] [Revised: 03/17/2025] [Accepted: 03/21/2025] [Indexed: 04/18/2025] Open
Abstract
Serotonin (5-HT), dopamine (DA), and norepinephrine (NE) are key monoamine neurotransmitters regulating behaviors, mood, and cognition. 5-HT affects early brain development, and its dysfunction induces brain vulnerability to stress, raising the risk of depression, anxiety, and autism in adulthood. These neurotransmitters are synthesized from tryptophan and tyrosine via hydroxylation and decarboxylation, and are metabolized by monoamine oxidase (MAO). This review aims to summarize the current findings on the role of dietary phytochemicals in modulating monoamine neurotransmitter biosynthesis, metabolism, and function, with an emphasis on their potential therapeutic applications in neuropsychiatric disorders. Phytochemicals exert antioxidant, neurotrophic, and neurohormonal activities, regulate gene expression, and induce epigenetic modifications. Phytoestrogens activate the estrogen receptors or estrogen-responsive elements of the promoter of target genes, enhance transcription of tryptophan hydroxylase and tyrosine hydroxylase, while inhibiting that of MAO. These compounds also influence the interaction between genetic and environmental factors, potentially reversing dysregulated neurotransmission and the brain architecture associated with neuropsychiatric conditions. Despite promising preclinical findings, clinical applications of phytochemicals remain challenging. Advances in nanotechnology and targeted delivery systems offer potential solutions to enhance clinical efficacy. This review discusses mechanisms, challenges, and strategies, underscoring the need for further research to advance phytochemical-based interventions for neuropsychiatric diseases.
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Affiliation(s)
- Makoto Naoi
- Department of Health and Nutritional Sciences, Faculty of Health Sciences, Aichi Gakuin University, 12 Araike, Iwasaki-cho, Nisshin 320-195, Aichi, Japan; (Y.W.); (W.M.); (M.S.-N.)
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16
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Stanojević M, Sollner Dolenc M. Mechanisms of bisphenol A and its analogs as endocrine disruptors via nuclear receptors and related signaling pathways. Arch Toxicol 2025:10.1007/s00204-025-04025-z. [PMID: 40116906 DOI: 10.1007/s00204-025-04025-z] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/22/2024] [Accepted: 03/13/2025] [Indexed: 03/23/2025]
Abstract
Bisphenol A (BPA) is a widely used chemical that is slowly being phased out due to its toxic properties. The industry is therefore looking for alternatives in the form of BPA analogs. However, studies have shown that BPA analogs can have comparable or even stronger endocrine and toxic effects than BPA. This review describes various mechanisms and interactions of BPA analogs with individual nuclear receptors. They interfere with downstream signaling pathways not only by binding to the nuclear receptors, but also by various alternative mechanisms, such as altering receptor expression, affecting co-receptors, altering signal transduction pathways, and even epigenetic changes. Further studies are needed to fully investigate the potential synergistic and additive effects that may result. In the search for a less harmful alternative to BPA, affinity to the nuclear receptor may not be the decisive factor. We therefore recommend a different study approach to assess their effects on the endocrine system before new BPA analogs are introduced to the market to protect public health and the environment.
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Affiliation(s)
- Mark Stanojević
- Bisafe Doo, 1000, Ljubljana, Slovenia
- Faculty of Pharmacy, University of Ljubljana, 1000, Ljubljana, Slovenia
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Dasi S, Naab TJ, Kwabi-Addo B, Apprey V, Beyene D, Dewitty RL, Nagel S, Williams R, Bolden K, Hayes-Dixon A, Shokrani B, Stewart DA, Kassim OO, Copeland RL, Kanaan YM. Methylation of ESRα Promoters in Benign Breast Tumors Could Be a Signature for Progression to Breast Cancer in African American Women. Cancer Genomics Proteomics 2025; 22:208-230. [PMID: 39993808 PMCID: PMC11880923 DOI: 10.21873/cgp.20497] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/28/2024] [Revised: 01/20/2025] [Accepted: 01/22/2025] [Indexed: 02/26/2025] Open
Abstract
BACKGROUND/AIM Methylation in the estrogen receptor alpha (ESRα) promoter is an epigenetic abnormality associated with breast cancer (BCa), whereas hypermethylation results in the loss of ER expression. MATERIALS AND METHODS Pyrosequencing was used to investigate a potential link between aberrant methylation in the P0/P1 promoters of ESRα and the risk of progression of benign fibrocystic and fibroadenoma tumors to BCa. RESULTS Results showed a significantly elevated level of DNA methylation in ESRα P1 promoter (p=0.0001) in fibroadenoma compared to ER-negative BCa tumors and a two-fold increased ESRα expression in fibrocystic and fibroadenoma benign tissues. In addition, methylation levels of HIN-1 and RASSF1A promoters were elevated in ER-positive compared to ER-negative BCa (p-value<0.04). ANOVA Mixed Model revealed significantly higher methylation levels in the promoter of RASSF1A for fibroadenoma and ER-positive BCa (p=0.004) compared to ER-negative BCa. Tumors with unclassified molecular subtypes (ER-positive, PR-negative, HER2-negative) had elevated levels of methylation (p=0.046) in the P0 promoter compared with luminal B (ER-positive, PR-positive, HER2-positive) tumors. Grade 3 tumors showed a borderline association with ESRα P1 promoter methylation when compared with grade 2 tumors (p=0.056). CONCLUSION ESRα P0 promoter hypermethylation may occur in the early stages of breast carcinogenesis, while P1 promoter methylation appears in later stages with a poor prognosis. Therefore, methylation of the ESRα promoter and other tumor-related genes could serve as a potential biomarker for predicting fibroadenoma progression risk to BCa.
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Affiliation(s)
- Sylvia Dasi
- Howard University Cancer Center, Howard University, Washington, DC, U.S.A
| | | | - Bernard Kwabi-Addo
- Department of Biochemistry and Molecular Biology, Howard University College of Medicine, Howard University, Washington, DC, U.S.A
| | - Victor Apprey
- Howard University Cancer Center, Howard University, Washington, DC, U.S.A
| | - Desta Beyene
- Howard University Cancer Center, Howard University, Washington, DC, U.S.A
| | - Robert L Dewitty
- Department of Surgery, Howard University Hospital, Washington, DC, U.S.A
| | - Steven Nagel
- Department of Surgery, Howard University Hospital, Washington, DC, U.S.A
| | - Robin Williams
- Department of Surgery, Howard University Hospital, Washington, DC, U.S.A
| | - Kelly Bolden
- Department of Surgery, Howard University Hospital, Washington, DC, U.S.A
| | - Andrea Hayes-Dixon
- Department of Surgery, Howard University Hospital, Washington, DC, U.S.A
| | - Babak Shokrani
- Department of Pathology, Howard University Hospital, Washington, DC, U.S.A
| | - Delisha A Stewart
- Department of Microbiology, Howard University College of Medicine, Howard University, Washington, DC, U.S.A
| | - Olakunle O Kassim
- Department of Microbiology, Howard University College of Medicine, Howard University, Washington, DC, U.S.A
| | - Robert L Copeland
- Department of Pharmacology, Howard University College of Medicine, Howard University, Washington, DC, U.S.A
| | - Yasmine M Kanaan
- Howard University Cancer Center, Howard University, Washington, DC, U.S.A.;
- Department of Microbiology, Howard University College of Medicine, Howard University, Washington, DC, U.S.A
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Atasoy-Zeybek A, Showel KK, Nagelli CV, Westendorf JJ, Evans CH. The intersection of aging and estrogen in osteoarthritis. NPJ WOMEN'S HEALTH 2025; 3:15. [PMID: 40017990 PMCID: PMC11860234 DOI: 10.1038/s44294-025-00063-1] [Citation(s) in RCA: 1] [Impact Index Per Article: 1.0] [Reference Citation Analysis] [Abstract] [Key Words] [Grants] [Track Full Text] [Download PDF] [Figures] [Subscribe] [Scholar Register] [Received: 10/31/2024] [Accepted: 02/03/2025] [Indexed: 03/01/2025]
Abstract
Osteoarthritis (OA) is a chronic joint disease characterized by cartilage degradation, inflammation, and pain. While multiple factors contribute to OA development, age and sex are primary risk factors, particularly affecting postmenopausal women. The dramatic increase in OA risk after menopause suggests estrogen deficiency accelerates disease progression. This review explores the molecular mechanisms connecting aging and estrogen deficiency in OA development, focusing on key genes and pathways identified through RNA sequencing.
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Affiliation(s)
- Aysegul Atasoy-Zeybek
- Musculoskeletal Gene Therapy Research Laboratory, Department of Physical Medicine and Rehabilitation, Mayo Clinic, Rochester, MN USA
| | - Kelly K. Showel
- Musculoskeletal Gene Therapy Research Laboratory, Department of Physical Medicine and Rehabilitation, Mayo Clinic, Rochester, MN USA
- Department of Pharmacology, Mayo Clinic, Rochester, MN USA
| | - Christopher V. Nagelli
- Musculoskeletal Gene Therapy Research Laboratory, Department of Physical Medicine and Rehabilitation, Mayo Clinic, Rochester, MN USA
- Department of Orthopedic Surgery, Mayo Clinic, Rochester, MN USA
| | | | - Christopher H. Evans
- Musculoskeletal Gene Therapy Research Laboratory, Department of Physical Medicine and Rehabilitation, Mayo Clinic, Rochester, MN USA
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Calle X, Garrido-Moreno V, Becerra B, Troncoso MF, Silva-Agüero JF, Guajardo-Correa E, Venegas-Zamora L, Lopez-Gallardo E, Muñoz-Córdova F, Fredericksen F, Aedo-Cares S, Peñaloza-Otárola A, Ortega A, Raya A, Maracaja-Coutinho V, Chiong M, Parra V, Lavandero S. 17-beta estradiol prevents cardiac myocyte hypertrophy by regulating mitochondrial E3 ubiquitin ligase 1. Cell Death Dis 2025; 16:111. [PMID: 39971924 PMCID: PMC11839923 DOI: 10.1038/s41419-025-07389-3] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/19/2024] [Revised: 12/24/2024] [Accepted: 01/24/2025] [Indexed: 02/21/2025]
Abstract
Cardiac hypertrophy is a cellular process characterized by the increased size of cardiomyocytes in response to a high workload or stress. 17-beta estradiol (E2) has cardioprotective and anti-hypertrophic effects by maintaining mitochondrial network and function. MUL1 is a mitochondrial ubiquitin ligase directly involved in the control of mitochondrial fission and mitophagy. Studies from our group and others have previously shown that cardiomyocyte hypertrophy is associated with mitochondrial fission and dysfunction. These findings led us to study in vitro whether E2 regulates MUL1 to prevent cardiac hypertrophy, mitochondrial fission, and dysfunction induced by the catecholamine norepinephrine (NE). Our results showed that NE induces hypertrophy in cultured rat cardiomyocytes. Pre-treatment with E2 (10-100 nM) prevented the NE-dependent increases in cell perimeter and the hypertrophic stress markers ANP and BNP at both the protein and mRNA levels. NE induced the fragmentation of the mitochondrial network and reduced ATP levels, effects that were both prevented by E2. In silico analysis suggested a putative binding site for estrogen receptors on the MUL1 gene promoter. In accordance with this finding, E2 prevented increases in MUL1 mRNA and protein levels induced by NE. Our data also showed that a siRNA MUL1 knockdown counteracted NE-induced cardiomyocyte hypertrophy and mitochondrial dysfunction, mirroring the protective effect triggered by E2. In contrast, a MUL1 adenovirus did not prevent the E2 protection from cardiomyocyte hypertrophy. Further, in vivo analysis in a transgenic mouse model overexpressing MUL1 revealed that only young male mice overexpressed the protein. Consequently, they exhibited increased levels of the hypertrophic marker ANP, an elevated heart weight, and larger cardiomyocyte size. Therefore, our data demonstrate that 17-beta estradiol prevents cardiac myocyte hypertrophy by regulating MUL1.
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Affiliation(s)
- Ximena Calle
- Advanced Center for Chronic Diseases (ACCDiS), Facultad de Ciencias Químicas y Farmacéuticas & Facultad de Medicina, Universidad de Chile, Santiago, Chile
| | - Valeria Garrido-Moreno
- Advanced Center for Chronic Diseases (ACCDiS), Facultad de Ciencias Químicas y Farmacéuticas & Facultad de Medicina, Universidad de Chile, Santiago, Chile
- Department of Internal Medicine (Cardiology Division), University of Texas Southwestern Medical Center, Dallas, Texas, USA
| | - Brenda Becerra
- Advanced Center for Chronic Diseases (ACCDiS), Facultad de Ciencias Químicas y Farmacéuticas & Facultad de Medicina, Universidad de Chile, Santiago, Chile
| | - Mayarling F Troncoso
- Advanced Center for Chronic Diseases (ACCDiS), Facultad de Ciencias Químicas y Farmacéuticas & Facultad de Medicina, Universidad de Chile, Santiago, Chile
| | - Juan Francisco Silva-Agüero
- Advanced Center for Chronic Diseases (ACCDiS), Facultad de Ciencias Químicas y Farmacéuticas & Facultad de Medicina, Universidad de Chile, Santiago, Chile
| | - Emanuel Guajardo-Correa
- Advanced Center for Chronic Diseases (ACCDiS), Facultad de Ciencias Químicas y Farmacéuticas & Facultad de Medicina, Universidad de Chile, Santiago, Chile
| | - Leslye Venegas-Zamora
- Advanced Center for Chronic Diseases (ACCDiS), Facultad de Ciencias Químicas y Farmacéuticas & Facultad de Medicina, Universidad de Chile, Santiago, Chile
| | - Erik Lopez-Gallardo
- Advanced Center for Chronic Diseases (ACCDiS), Facultad de Ciencias Químicas y Farmacéuticas & Facultad de Medicina, Universidad de Chile, Santiago, Chile
| | - Felipe Muñoz-Córdova
- Advanced Center for Chronic Diseases (ACCDiS), Facultad de Ciencias Químicas y Farmacéuticas & Facultad de Medicina, Universidad de Chile, Santiago, Chile
| | - Fernanda Fredericksen
- Advanced Center for Chronic Diseases (ACCDiS), Facultad de Ciencias Químicas y Farmacéuticas & Facultad de Medicina, Universidad de Chile, Santiago, Chile
- Millennium Institute Center for Genome Regulation, Santiago, Chile
| | - Sebastian Aedo-Cares
- Advanced Center for Chronic Diseases (ACCDiS), Facultad de Ciencias Químicas y Farmacéuticas & Facultad de Medicina, Universidad de Chile, Santiago, Chile
| | - Allan Peñaloza-Otárola
- Advanced Center for Chronic Diseases (ACCDiS), Facultad de Ciencias Químicas y Farmacéuticas & Facultad de Medicina, Universidad de Chile, Santiago, Chile
| | - Angelica Ortega
- Advanced Center for Chronic Diseases (ACCDiS), Facultad de Ciencias Químicas y Farmacéuticas & Facultad de Medicina, Universidad de Chile, Santiago, Chile
| | - Angel Raya
- Regenerative Medicine Program, Institut d'Investigació Biomèdica de Bellvitge-IDIBELL, Program for Clinical Translation of Regenerative Medicine in Catalonia-P-[CMRC], and Center for Networked Biomedical Research on Bioengineering, Biomaterials and Nanomedicine (CIBER-BBN), L'Hospitalet de Llobregat, Barcelona, Spain
- Institució Catalana de Recerca i Estudis Avançats (ICREA), Barcelona, Spain
| | - Vinicius Maracaja-Coutinho
- Advanced Center for Chronic Diseases (ACCDiS), Facultad de Ciencias Químicas y Farmacéuticas & Facultad de Medicina, Universidad de Chile, Santiago, Chile
- SYSTEMIX Center for Systems Biology, O'Higgins University, Rancagua, Chile
| | - Mario Chiong
- Advanced Center for Chronic Diseases (ACCDiS), Facultad de Ciencias Químicas y Farmacéuticas & Facultad de Medicina, Universidad de Chile, Santiago, Chile
| | - Valentina Parra
- Advanced Center for Chronic Diseases (ACCDiS), Facultad de Ciencias Químicas y Farmacéuticas & Facultad de Medicina, Universidad de Chile, Santiago, Chile.
- SYSTEMIX Center for Systems Biology, O'Higgins University, Rancagua, Chile.
| | - Sergio Lavandero
- Advanced Center for Chronic Diseases (ACCDiS), Facultad de Ciencias Químicas y Farmacéuticas & Facultad de Medicina, Universidad de Chile, Santiago, Chile.
- Department of Internal Medicine (Cardiology Division), University of Texas Southwestern Medical Center, Dallas, Texas, USA.
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20
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Liu X, Zhao Y, Feng Y, Wang S, Luo A, Zhang J. Ovarian Aging: The Silent Catalyst of Age-Related Disorders in Female Body. Aging Dis 2025:AD.2024.1468. [PMID: 39965250 DOI: 10.14336/ad.2024.1468] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/12/2024] [Accepted: 01/27/2025] [Indexed: 02/20/2025] Open
Abstract
Age-related diseases have emerged as a global concern as the population ages. Consequently, understanding the underlying causes of aging and exploring potential anti-aging interventions is imperative. In females, the ovaries serve as the principal organs responsible for ovulation and the production of female hormones. The aging ovaries are related to infertility, menopause, and associated menopausal syndromes, with menopause representing the culmination of ovarian aging. Current evidence indicates that ovarian aging may contribute to dysfunction across multiple organ systems, including, but not limited to, cognitive impairment, osteoporosis, and cardiovascular disease. Nevertheless, due to the widespread distribution of sex hormone receptors throughout the body, ovarian aging affects not only these specific organs but also influences a broader spectrum of age-related diseases in women. Despite this, the impact of ovarian aging on overall age-related diseases has been largely neglected. This review provides a thorough summary of the impact of ovarian aging on age-related diseases, encompassing the nervous, circulatory, locomotor, urinary, digestive, respiratory, and endocrine systems. Additionally, we have outlined prospective therapeutic approaches for addressing both ovarian aging and age-related diseases, with the aim of mitigating their impacts and preserving women's fertility, physical health, and psychological well-being.
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Affiliation(s)
- Xingyu Liu
- Department of Obstetrics and Gynecology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430030, China
- National Clinical Research Center for Obstetrical and Gynecological Diseases, Huazhong University of Science and Technology, Wuhan, 430030, China
- Key Laboratory of Cancer Invasion and Metastasis, Ministry of Education, Huazhong University of Science and Technology, Wuhan, 430030, China
| | - Yuanqu Zhao
- Department of Obstetrics and Gynecology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430030, China
- National Clinical Research Center for Obstetrical and Gynecological Diseases, Huazhong University of Science and Technology, Wuhan, 430030, China
- Key Laboratory of Cancer Invasion and Metastasis, Ministry of Education, Huazhong University of Science and Technology, Wuhan, 430030, China
| | - Yanzhi Feng
- Department of Obstetrics and Gynecology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430030, China
- National Clinical Research Center for Obstetrical and Gynecological Diseases, Huazhong University of Science and Technology, Wuhan, 430030, China
- Key Laboratory of Cancer Invasion and Metastasis, Ministry of Education, Huazhong University of Science and Technology, Wuhan, 430030, China
| | - Shixuan Wang
- Department of Obstetrics and Gynecology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430030, China
- National Clinical Research Center for Obstetrical and Gynecological Diseases, Huazhong University of Science and Technology, Wuhan, 430030, China
- Key Laboratory of Cancer Invasion and Metastasis, Ministry of Education, Huazhong University of Science and Technology, Wuhan, 430030, China
| | - Aiyue Luo
- Department of Obstetrics and Gynecology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430030, China
- National Clinical Research Center for Obstetrical and Gynecological Diseases, Huazhong University of Science and Technology, Wuhan, 430030, China
- Key Laboratory of Cancer Invasion and Metastasis, Ministry of Education, Huazhong University of Science and Technology, Wuhan, 430030, China
| | - Jinjin Zhang
- Department of Obstetrics and Gynecology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430030, China
- National Clinical Research Center for Obstetrical and Gynecological Diseases, Huazhong University of Science and Technology, Wuhan, 430030, China
- Key Laboratory of Cancer Invasion and Metastasis, Ministry of Education, Huazhong University of Science and Technology, Wuhan, 430030, China
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21
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Melone V, Palumbo D, Palo L, Brusco N, Salvati A, Tarallo A, Giurato G, Rizzo F, Nassa G, Weisz A, Tarallo R. LncRNA PVT1 links estrogen receptor alpha and the polycomb repressive complex 2 in suppression of pro-apoptotic genes in hormone-responsive breast cancer. Cell Death Dis 2025; 16:80. [PMID: 39922814 PMCID: PMC11807188 DOI: 10.1038/s41419-025-07423-4] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/27/2024] [Revised: 01/13/2025] [Accepted: 02/03/2025] [Indexed: 02/10/2025]
Abstract
RNA-based therapeutics highlighted novel approaches to target either coding or noncoding molecules for multiple diseases treatment. In breast cancer (BC), a multitude of deregulated long noncoding RNAs (lncRNAs) have been identified as potential therapeutic targets also in the context of antiestrogen resistance, and the RNA binding activity of the estrogen receptor α (ERα) points additional potential candidates to interfere with estrogenic signaling. A set of lncRNAs was selected among ERα-associated RNAs in BC cell nuclei due to their roles in processes such as transcriptional regulation and epigenetic chromatin modifications. Native immunoprecipitation of nuclear ERα-interacting RNAs coupled to NGS (RIP-Seq) was performed in MCF-7 cells, leading to the identification of essential lncRNAs interacting with the receptor in multi-molecular regulatory complexes. Among these, PVT1, FGD5-AS1 and EPB41L4A-AS1 were selected for further investigation. Functional assays and transcriptome analysis following lncRNA knock-down indicated PVT1 as the master modulator of some of the most relevant BC hallmarks, such as cell proliferation, apoptosis, migration and response to hypoxia. In addition, targeted experiments identified PVT1 as a key factor in the composition of PRC2-ERα network involved in downregulation of tumor suppressor genes, including BTG2.
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Affiliation(s)
- Viola Melone
- Laboratory of Molecular Medicine and Genomics, Department of Medicine, Surgery and Dentistry "Scuola Medica Salernitana", University of Salerno, 84081, Baronissi, SA, Italy
| | - Domenico Palumbo
- Laboratory of Molecular Medicine and Genomics, Department of Medicine, Surgery and Dentistry "Scuola Medica Salernitana", University of Salerno, 84081, Baronissi, SA, Italy
| | - Luigi Palo
- Laboratory of Molecular Medicine and Genomics, Department of Medicine, Surgery and Dentistry "Scuola Medica Salernitana", University of Salerno, 84081, Baronissi, SA, Italy
- Genome Research Center for Health, 84081, Baronissi, SA, Italy
| | - Noemi Brusco
- Laboratory of Molecular Medicine and Genomics, Department of Medicine, Surgery and Dentistry "Scuola Medica Salernitana", University of Salerno, 84081, Baronissi, SA, Italy
| | - Annamaria Salvati
- Laboratory of Molecular Medicine and Genomics, Department of Medicine, Surgery and Dentistry "Scuola Medica Salernitana", University of Salerno, 84081, Baronissi, SA, Italy
| | - Antonietta Tarallo
- Department of Translational Medical Sciences, Federico II University, 80131, Naples, Italy
- Telethon Institute of Genetics and Medicine, 80078, Pozzuoli, Italy
| | - Giorgio Giurato
- Laboratory of Molecular Medicine and Genomics, Department of Medicine, Surgery and Dentistry "Scuola Medica Salernitana", University of Salerno, 84081, Baronissi, SA, Italy
| | - Francesca Rizzo
- Laboratory of Molecular Medicine and Genomics, Department of Medicine, Surgery and Dentistry "Scuola Medica Salernitana", University of Salerno, 84081, Baronissi, SA, Italy
| | - Giovanni Nassa
- Laboratory of Molecular Medicine and Genomics, Department of Medicine, Surgery and Dentistry "Scuola Medica Salernitana", University of Salerno, 84081, Baronissi, SA, Italy
| | - Alessandro Weisz
- Laboratory of Molecular Medicine and Genomics, Department of Medicine, Surgery and Dentistry "Scuola Medica Salernitana", University of Salerno, 84081, Baronissi, SA, Italy.
- Genome Research Center for Health, 84081, Baronissi, SA, Italy.
- Medical Genomics Program and Division of Oncology, AOU 'S. Giovanni di Dio e Ruggi d'Aragona' University of Salerno, and Rete Oncologica Campana, 84131, Salerno, Italy.
| | - Roberta Tarallo
- Laboratory of Molecular Medicine and Genomics, Department of Medicine, Surgery and Dentistry "Scuola Medica Salernitana", University of Salerno, 84081, Baronissi, SA, Italy.
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22
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Alalhareth IS, Alyami SM, Alshareef AH, Ajeibi AO, Al Munjem MF, Elfifi AA, Alsharif MM, Alzahrani SA, Alqaad MA, Bakir MB, Abdel-Wahab BA. Cellular Epigenetic Targets and Epidrugs in Breast Cancer Therapy: Mechanisms, Challenges, and Future Perspectives. Pharmaceuticals (Basel) 2025; 18:207. [PMID: 40006021 PMCID: PMC11858621 DOI: 10.3390/ph18020207] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 01/09/2025] [Revised: 01/31/2025] [Accepted: 02/01/2025] [Indexed: 02/27/2025] Open
Abstract
Breast cancer is the most common malignancy affecting women, manifesting as a heterogeneous disease with diverse molecular characteristics and clinical presentations. Recent studies have elucidated the role of epigenetic modifications in the pathogenesis of breast cancer, including drug resistance and efflux characteristics, offering potential new diagnostic and prognostic markers, treatment efficacy predictors, and therapeutic agents. Key modifications include DNA cytosine methylation and the covalent modification of histone proteins. Unlike genetic mutations, reprogramming the epigenetic landscape of the cancer epigenome is a promising targeted therapy for the treatment and reversal of drug resistance. Epidrugs, which target DNA methylation and histone modifications, can provide novel options for the treatment of breast cancer by reversing the acquired resistance to treatment. Currently, the most promising approach involves combination therapies consisting of epidrugs with immune checkpoint inhibitors. This review examines the aberrant epigenetic regulation of breast cancer initiation and progression, focusing on modifications related to estrogen signaling, drug resistance, cancer progression, and the epithelial-mesenchymal transition (EMT). It examines existing epigenetic drugs for treating breast cancer, including agents that modify DNA, inhibitors of histone acetyltransferases, histone deacetylases, histone methyltransferases, and histone demethyltransferases. It also delves into ongoing studies on combining epidrugs with other therapies and addresses the upcoming obstacles in this field.
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Affiliation(s)
- Ibrahim S. Alalhareth
- College of Pharmacy, Najran University, Najran 66256, Saudi Arabia; (I.S.A.); (S.M.A.)
| | - Saleh M. Alyami
- College of Pharmacy, Najran University, Najran 66256, Saudi Arabia; (I.S.A.); (S.M.A.)
| | - Ali H. Alshareef
- Department of Pharmaceuticals Care, Ministry of Defense, Najran 66281, Saudi Arabia; (A.H.A.); (A.O.A.); (A.A.E.); (M.M.A.)
| | - Ahmed O. Ajeibi
- Department of Pharmaceuticals Care, Ministry of Defense, Najran 66281, Saudi Arabia; (A.H.A.); (A.O.A.); (A.A.E.); (M.M.A.)
| | - Manea F. Al Munjem
- King Khaled Hospital -Najran Health Cluster, Najran 66261, Saudi Arabia;
| | - Ahmad A. Elfifi
- Department of Pharmaceuticals Care, Ministry of Defense, Najran 66281, Saudi Arabia; (A.H.A.); (A.O.A.); (A.A.E.); (M.M.A.)
| | - Meshal M. Alsharif
- Department of Pharmaceuticals Care, Ministry of Defense, Najran 66281, Saudi Arabia; (A.H.A.); (A.O.A.); (A.A.E.); (M.M.A.)
| | - Seham A. Alzahrani
- Pharmacy Department, Khamis Mushait General Hospital, King Khalid Rd, Al Shifa, Khamis Mushait 62433, Saudi Arabia;
| | - Mohammed A. Alqaad
- Department of Pharmaceutical Care Services, Al Noor Specialized Hospital, Makkah Health, Cluster, Makkah 24241, Saudi Arabia;
| | - Marwa B. Bakir
- Department of Medical Education, College of Medicine, Najran University, Najran 1988, Saudi Arabia;
| | - Basel A. Abdel-Wahab
- Department of Pharmacology, College of Pharmacy, Najran University, Najran 1988, Saudi Arabia
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23
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Kim J, Bang H, Seong C, Kim ES, Kim SY. Transcription factors and hormone receptors: Sex‑specific targets for cancer therapy (Review). Oncol Lett 2025; 29:93. [PMID: 39691589 PMCID: PMC11650965 DOI: 10.3892/ol.2024.14839] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/20/2024] [Accepted: 11/15/2024] [Indexed: 12/19/2024] Open
Abstract
Despite advancements in diagnostic and therapeutic technologies, cancer continues to pose a challenge to disease-free longevity in humans. Numerous factors contribute to the onset and progression of cancer, among which sex differences, as an intrinsic biological condition, warrant further attention. The present review summarizes the roles of hormone receptors estrogen receptor α (ERα), estrogen receptor β (ERβ) and androgen receptor (AR) in seven types of cancer: Breast, prostate, ovarian, lung, gastric, colon and liver cancer. Key cancer-related transcription factors known to be activated through interactions with these hormone receptors have also been discussed. To assess the impact of sex hormone receptors on different cancer types, hormone-related transcription factors were analyzed using the SignaLink 3.0 database. Further analysis focused on six key transcription factors: CCCTC-binding factor, forkhead box A1, retinoic acid receptor α, PBX homeobox 1, GATA binding protein 2 and CDK inhibitor 1A. The present review demonstrates that these transcription factors significantly influence hormone receptor activity across various types of cancer, and elucidates the complex interactions between these transcription factors and hormone receptors, offering new insights into their roles in cancer progression. The findings suggest that targeting these common transcription factors could improve the efficacy of hormone therapy and provide a unified approach to treating various types of cancer. Understanding the dual and context-dependent roles of these transcription factors deepens the current understanding of the molecular mechanisms underlying hormone-driven tumor progression and could lead to more effective targeted therapeutic strategies.
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Affiliation(s)
- Juyeon Kim
- Department of Chemistry, College of Science and Technology, Duksung Women's University, Seoul 01369, Republic of Korea
| | - Hyobin Bang
- Department of Chemistry, College of Science and Technology, Duksung Women's University, Seoul 01369, Republic of Korea
| | - Cheyun Seong
- Department of Chemistry, College of Science and Technology, Duksung Women's University, Seoul 01369, Republic of Korea
| | - Eun-Sook Kim
- College of Pharmacy, Duksung Women's University, Seoul 01369, Republic of Korea
| | - Sun Young Kim
- Department of Chemistry, College of Science and Technology, Duksung Women's University, Seoul 01369, Republic of Korea
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24
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Cassalia F, Lunardon A, Frattin G, Danese A, Caroppo F, Fortina AB. How Hormonal Balance Changes Lives in Women with Psoriasis. J Clin Med 2025; 14:582. [PMID: 39860587 PMCID: PMC11766064 DOI: 10.3390/jcm14020582] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/05/2024] [Revised: 01/07/2025] [Accepted: 01/14/2025] [Indexed: 01/27/2025] Open
Abstract
Psoriasis is a chronic, immune-mediated skin disease significantly impacting women, with disease severity often modulated by hormonal fluctuations. This review examines the influence of hormonal changes on the course of psoriasis in women, focusing on key life stages-including the menstrual cycle, pregnancy, postpartum, and menopause-and their impact on disease progression and symptomatology. Estrogen, the principal female sex hormone, plays a critical role in immune modulation. Variations in estrogen levels, which occur naturally throughout a woman's life, are associated with fluctuations in psoriasis severity. Low estrogen levels, as seen during menstruation or menopause, are linked to symptom exacerbation, while elevated levels during pregnancy may reduce symptoms in some women. However, responses are variable, with others experiencing no change or worsening during pregnancy. Postpartum, the rapid decline in estrogen often triggers severe flare-ups, while menopause, marked by a sustained estrogen reduction, frequently correlates with increased disease severity and flare frequency. The review also addresses the profound impact of psoriasis on women's quality of life, including physical discomfort, psychological distress, and social stigma. Additionally, fertility concerns are discussed, as severe psoriasis and associated treatments may increase the risk of adverse pregnancy outcomes. Consideration is given to hormonal therapies, lifestyle modifications, and their effects on psoriasis, underscoring the need for personalized treatment approaches that account for hormonal influences. Understanding these hormonal dynamics is essential for developing targeted, effective management strategies that enhance quality of life for women affected by psoriasis.
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Affiliation(s)
- Fortunato Cassalia
- Dermatology Unit, Department of Medicine (DIMED), University of Padua, 35121 Padua, Italy; (A.L.); (G.F.); (F.C.); (A.B.F.)
| | - Anna Lunardon
- Dermatology Unit, Department of Medicine (DIMED), University of Padua, 35121 Padua, Italy; (A.L.); (G.F.); (F.C.); (A.B.F.)
| | - Giovanni Frattin
- Dermatology Unit, Department of Medicine (DIMED), University of Padua, 35121 Padua, Italy; (A.L.); (G.F.); (F.C.); (A.B.F.)
| | - Andrea Danese
- Section of Dermatology and Venereology, Department of Medicine, University of Verona, 37126 Verona, Italy;
| | - Francesca Caroppo
- Dermatology Unit, Department of Medicine (DIMED), University of Padua, 35121 Padua, Italy; (A.L.); (G.F.); (F.C.); (A.B.F.)
- Section of Dermatology and Venereology, Department of Medicine, University of Verona, 37126 Verona, Italy;
| | - Anna Belloni Fortina
- Dermatology Unit, Department of Medicine (DIMED), University of Padua, 35121 Padua, Italy; (A.L.); (G.F.); (F.C.); (A.B.F.)
- Pediatric Dermatology Regional Center, Department of Women’s and Children’s Health (SDB), University of Padua, 35122 Padua, Italy
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25
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Qin Y, Huang X, Lin J, Pan L, Liang Q, Li W. Analysis of Factors Related to Pulmonary Nodules in Patients With Fatty Liver: A Large-Scale Cohort Study Based on a Physical Examination Population. Int J Gen Med 2025; 18:247-260. [PMID: 39839238 PMCID: PMC11748034 DOI: 10.2147/ijgm.s495396] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/27/2024] [Accepted: 01/12/2025] [Indexed: 01/23/2025] Open
Abstract
Purpose People with fatty liver are at high risk for pulmonary nodules, but the underlying mechanism is unclear. This study aimed to investigate the occurrence of lung nodules in fatty liver patients and explore influencing factors. Patients and Methods We retrospectively analyzed 57,119 individuals who underwent health checkups at the People's Hospital of Guangxi from May 2020 to May 2024. Patients with fatty liver were divided into pulmonary nodule and no pulmonary nodule groups. Univariate and multifactorial analyses were conducted using physical examination data, laboratory test indexes, and imaging information. Logistic regression analysis was used to identify independent predictors of pulmonary nodules in fatty liver patients. Results A total of 20,042 patients with fatty liver were included in the study, with 12,334 (61.5%) in the lung nodule group and 7708 (38.5%) in the non-lung nodule group. Age, gender, systolic and diastolic blood pressure were significantly higher in the pulmonary nodule group, while body weight, waist circumference, hemoglobin, uric acid, and glutamyltransferase were lower. Multifactorial logistic regression analysis showed that male gender, body weight, age, and diastolic blood pressure were significant factors influencing lung nodule development in fatty liver patients. Conclusion Fatty liver disease is independently associated with an increased incidence of pulmonary nodules, highlighting its importance in lung cancer screening and prevention.
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Affiliation(s)
- Yan Qin
- Health Management Center, People’s Hospital of Guangxi Zhuang Autonomous Region and Guangxi Academy of Medical Sciences, Nanning, People’s Republic of China
| | - Xiaozhi Huang
- Health Management Center, People’s Hospital of Guangxi Zhuang Autonomous Region and Guangxi Academy of Medical Sciences, Nanning, People’s Republic of China
| | - Jiali Lin
- Health Management Research Institute, People’s Hospital of Guangxi Zhuang Autonomous Region and Guangxi Academy of Medical Sciences, Nanning, People’s Republic of China
| | - Liuxian Pan
- Health Management Center, People’s Hospital of Guangxi Zhuang Autonomous Region and Guangxi Academy of Medical Sciences, Nanning, People’s Republic of China
| | - Qiuyu Liang
- Health Management Research Institute, People’s Hospital of Guangxi Zhuang Autonomous Region and Guangxi Academy of Medical Sciences, Nanning, People’s Republic of China
| | - Wei Li
- Health Management Center, People’s Hospital of Guangxi Zhuang Autonomous Region and Guangxi Academy of Medical Sciences, Nanning, People’s Republic of China
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26
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Battistoni O, Huston RH, Verma C, Pacheco-Fernandez T, Abul-Khoudoud S, Campbell A, Satoskar AR. Understanding Sex-biases in Kinetoplastid Infections: Leishmaniasis and Trypanosomiasis. Expert Rev Mol Med 2025; 27:e7. [PMID: 39781597 PMCID: PMC11803520 DOI: 10.1017/erm.2024.41] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/22/2024] [Revised: 11/27/2024] [Accepted: 12/13/2024] [Indexed: 01/12/2025]
Abstract
BACKGROUND Leishmaniasis, Chagas disease (CD), and Human African Trypanosomiasis (HAT) are neglected tropical diseases in humans caused by intracellular parasites from the class Kinetoplastida. Leishmaniasis is one infectious disease that exhibits sex-bias not explained solely by behavioral or cultural differences. However, HAT and CD have less well documented and understood sex-related differences, either due to a lack of differences or insufficient research and reporting. METHODS This paper reviews the rate of disease and disease severity among male and females infected with CD, HAT, and leishmaniasis. We further review the specific immune response to each pathogen and potential sex-based mechanisms which could impact immune responses and disease outcomes. RESULTS These mechanisms include sex hormone modulation of the immune response, sex-related genetic differences, and socio-cultural factors impacting risky behaviors in men and women. The mechanistic differences in immune response among sexes and pathogens provide important insights and identification of areas for further research. CONCLUSIONS This information can aid in future development of inclusive, targeted, safe, and effective treatments and control measures for these neglected diseases and other infectious diseases.
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Affiliation(s)
- Olivia Battistoni
- Department of Pathology, Wexner Medical Center, The Ohio State University, Columbus, OH, USA
| | - Ryan H. Huston
- Department of Pathology, Wexner Medical Center, The Ohio State University, Columbus, OH, USA
- Department of Microbiology, Wexner Medical Center, The Ohio State University, Columbus, OH, USA
| | - Chaitenya Verma
- Department of Pathology, Wexner Medical Center, The Ohio State University, Columbus, OH, USA
- Department of Biotechnology, Sharda School of Engineering & Technology, Sharda University, Greater Noida, UP, India
| | - Thalia Pacheco-Fernandez
- Division of Emerging and Transfusion Transmitted Disease, Center for Biologics Evaluation and Research, U.S. Food and Drug Administration, Silver Spring, MD, USA
| | - Sara Abul-Khoudoud
- Department of Pathology, Wexner Medical Center, The Ohio State University, Columbus, OH, USA
| | - Alison Campbell
- Department of Microbiology, Wexner Medical Center, The Ohio State University, Columbus, OH, USA
| | - Abhay R. Satoskar
- Department of Pathology, Wexner Medical Center, The Ohio State University, Columbus, OH, USA
- Department of Microbiology, Wexner Medical Center, The Ohio State University, Columbus, OH, USA
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Greygoose E, Metharom P, Kula H, Seckin TK, Seckin TA, Ayhan A, Yu Y. The Estrogen-Immune Interface in Endometriosis. Cells 2025; 14:58. [PMID: 39791759 PMCID: PMC11720315 DOI: 10.3390/cells14010058] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 12/16/2024] [Revised: 12/30/2024] [Accepted: 12/30/2024] [Indexed: 01/12/2025] Open
Abstract
Endometriosis is a gynecologic condition characterized by the growth of endometrium-like stroma and glandular elements outside of the uterine cavity. The involvement of hormonal dysregulation, specifically estrogen, is well established in the initiation, progression, and maintenance of the condition. Evidence also highlights the association between endometriosis and altered immune states. The human endometrium is a highly dynamic tissue that undergoes frequent remodeling in response to hormonal regulation during the menstrual cycle. Similarly, endometriosis shares this propensity, compounded by unclear pathogenic mechanisms, presenting unique challenges in defining its etiology and pathology. Here, we provide a lens to understand the interplay between estrogen and innate and adaptive immune systems throughout the menstrual cycle in the pathogenesis of endometriosis. Estrogen is closely linked to many altered inflammatory and immunomodulatory states, affecting both tissue-resident and circulatory immune cells. This review summarizes estrogenic interactions with specific myeloid and lymphoid cells, highlighting their implications in the progression of endometriosis.
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Affiliation(s)
- Emily Greygoose
- Curtin Health Innovation Research Institute (CHIRI), Faculty of Health Sciences, Curtin University, Perth, WA 6102, Australia
- Curtin Medical School, Faculty of Health Sciences, Curtin University, Perth, WA 6102, Australia
| | - Pat Metharom
- Curtin Health Innovation Research Institute (CHIRI), Faculty of Health Sciences, Curtin University, Perth, WA 6102, Australia
- Curtin Medical School, Faculty of Health Sciences, Curtin University, Perth, WA 6102, Australia
| | - Hakan Kula
- Department of Obstetrics and Gynecology, Faculty of Medicine, Dokuz Eylul University, Izmir 35340, Turkey
| | - Timur K. Seckin
- Burnett School of Medicine, Texas Christian University, Fort Worth, TX 76104, USA;
| | - Tamer A. Seckin
- Department of Gynecology, Lenox Hill Hospital, and Hofstra University, New York, NY 10075, USA
| | - Ayse Ayhan
- Department of Tumor Pathology, Hamamatsu University School of Medicine, Hamamatsu 431-3192, Japan
- Department of Gynecology and Obstetrics, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA
| | - Yu Yu
- Curtin Health Innovation Research Institute (CHIRI), Faculty of Health Sciences, Curtin University, Perth, WA 6102, Australia
- Curtin Medical School, Faculty of Health Sciences, Curtin University, Perth, WA 6102, Australia
- Discipline of Obstetrics and Gynaecology, Medical School, University of Western Australia, Crawley, WA 6009, Australia
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Fila M, Przyslo L, Derwich M, Pawlowska E, Blasiak J. Sexual Dimorphism in Migraine. Focus on Mitochondria. Curr Pain Headache Rep 2025; 29:11. [PMID: 39760955 DOI: 10.1007/s11916-024-01317-4] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Accepted: 11/02/2024] [Indexed: 01/07/2025]
Abstract
PURPOSE OF REVIEW Migraine prevalence in females is up to 3 times higher than in males and females show higher frequency, longer duration, and increased severity of headache attacks, but the reason for that difference is not known. This narrative review presents the main aspects of sex dimorphism in migraine prevalence and discusses the role of sex-related differences in mitochondrial homeostasis in that dimorphism. The gender dimension is also shortly addressed. RECENT FINDINGS The imbalance between energy production and demand in the brain susceptible to migraine is an important element of migraine pathogenesis. Mitochondria are the main energy source in the brain and mitochondrial impairment is reported in both migraine patients and animal models of human migraine. However, it is not known whether the observed changes are consequences of primary disturbance of mitochondrial homeostasis or are secondary to the migraine-affected hyperexcitable brain. Sex hormones regulate mitochondrial homeostasis, and several reports suggest that the female hormones may act protectively against mitochondrial impairment, contributing to more effective energy production in females, which may be utilized in the mechanisms responsible for migraine progression. Migraine is characterized by several comorbidities that are characterized by sex dimorphism in their prevalence and impairments in mitochondrial functions. Mitochondria may play a major role in sexual dimorphism in migraine through the involvement in energy production, the dependence on sex hormones, and the involvement in sex-dependent comorbidities. Studies on the role of mitochondria in sex dimorphism in migraine may contribute to precise personal therapeutic strategies.
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Affiliation(s)
- Michal Fila
- Department of Developmental Neurology and Epileptology, Polish Mother's Memorial Hospital Research Institute, 93-338, Lodz, Poland
| | - Lukasz Przyslo
- Department of Developmental Neurology and Epileptology, Polish Mother's Memorial Hospital Research Institute, 93-338, Lodz, Poland
| | - Marcin Derwich
- Department of Developmental Dentistry, Medical University of Lodz, 90-647, Lodz, Poland
| | - Elzbieta Pawlowska
- Department of Developmental Dentistry, Medical University of Lodz, 90-647, Lodz, Poland
| | - Janusz Blasiak
- Faculty of Medicine, Collegium Medicum, Mazovian Academy in Plock, 09-420, Plock, Poland.
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Majeed I, Nisa MU, Rahim MA, Ramadan MF, Al‐Asmari F, Alissa M, Zongo E. Role of Seed Therapy on Estrous and Non-Estrous Cycle in Healthy Female Rats. Food Sci Nutr 2025; 13:e4692. [PMID: 39807431 PMCID: PMC11725979 DOI: 10.1002/fsn3.4692] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 07/23/2024] [Revised: 10/25/2024] [Accepted: 12/03/2024] [Indexed: 01/16/2025] Open
Abstract
Seed cycling therapy (SCT) involves the consumption of specific seeds during the follicular and luteal phases of the menstrual cycle to help balance reproductive hormones. This study aimed to investigate the effects of SCT on healthy female Wistar albino rats to prevent hormonal imbalances. For SCT, a seed mixture (SM1) consisting of flax, pumpkin, and soybeans (estrogenic seeds) was administered at doses of 5.4, 4, 8, and 12 g per 100 g of diet during the non-estrous phase. Another seed mixture (SM2) comprising sunflower, sesame, and chickpeas (also estrogenic) was given at doses of 3.12, 8, and 8 g per 100 g during the estrous phase. A total of 36 female Wistar albino rats were divided into four groups, each containing nine rats: Basal diet, seed cycling 1, seed cycling 2, and seed cycling 3 (SC3). All diets were isocaloric and iso-nitrogenous. The results showed that body weight, feed intake, and water consumption were significantly decreased in the SC3 group (p < 0.05), with increased nutrient digestibility. The tested diets led to significant positive changes in levels of follicle-stimulating hormone, luteinizing hormone, high-density lipoproteins (HDL-c), low-density lipoproteins (LDL-c), LDL-c/HDL-c ratio, aspartate aminotransferase, and alanine aminotransferase across both phases of the cycle. There was also a notable increase in estrogen, testosterone, prolactin, and insulin levels (p < 0.05). Ovarian histology results showed normal morphology in the SC3 group, suggesting that this dosage was the most effective. The findings indicate that further studies are warranted to explore the genetic mechanisms underlying phytoestrogen action during reproductive stages.
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Affiliation(s)
- Iqra Majeed
- Department of Nutritional Sciences, Faculty of Medical SciencesGovernment College UniversityFaisalabadPakistan
| | - Mahr Un Nisa
- Department of Nutritional Sciences, Faculty of Medical SciencesGovernment College UniversityFaisalabadPakistan
| | - Muhammad Abdul Rahim
- Department of Food Science & Nutrition, Faculty of Medicine and Allied Health SciencesTimes InstituteMultanPakistan
| | - Mohamed Fawzy Ramadan
- Department of Clinical Nutrition, Faculty of Applied Medical SciencesUmm Al‐Qura UniversityMakkahSaudi Arabia
| | - Fahad Al‐Asmari
- Department of Food and Nutrition SciencesCollege of Agricultural and Food Sciences, King Faisal UniversityAl‐AhsaSaudi Arabia
| | - Mohammed Alissa
- Department of Medical LaboratoryCollege of Applied Medical Sciences, Prince Sattam bin Abdulaziz UniversityAl‐KharjSaudi Arabia
| | - Eliasse Zongo
- Laboratory of Research and Teaching in Animal Health and BiotechnologyNazi Boni UniversityBobo‐DioulassoBurkina Faso
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Pandey P, Nautiyal G, Purohit D, Lata S, Kumar V, Makhija M, Manchanda D, Minocha N, Kumar S, Kaushik D. Role of Nanoformulations in the Treatment of Lung Cancer. RECENT PATENTS ON NANOTECHNOLOGY 2025; 19:407-433. [PMID: 38321901 DOI: 10.2174/0118722105264531231205042817] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Received: 07/14/2023] [Revised: 10/19/2023] [Accepted: 11/06/2023] [Indexed: 02/08/2024]
Abstract
Lung cancer is the second deadliest disease in the world. A major portion of deaths related to cancer are due to lung cancer in both males and females. Interestingly, unbelievable advances have occurred in recent years through the use of nanotechnology and development in both the diagnosis and treatment of lung cancer. Due to their in vivo stability, the nanotechnology-based pharmacological system gained huge attractiveness, solubility, absorption from the intestine, pharmacological effectiveness, etc. of various anticancer agents. However, this field needs to be utilized more to get maximum results in the treatment of lung cancer, along with wider context medicines. In the present review, authors have tried to concentrate their attention on lung cancer`s difficulties along with the current pharmacological and diagnostic situation, and current advancements in approaches based on nanotechnology for the treatment and diagnosis of lung cancer. While nanotechnology offers these promising avenues for lung cancer diagnosis and treatment, it is important to acknowledge the need for careful evaluation of safety, efficacy, and regulatory approval. With continued research and development, nanotechnology holds tremendous potential to revolutionize the management of lung cancer and improve patient outcomes. The review also highlights the involvement of endocrine systems, especially estrogen in lung cancer proliferation. Some of the recent clinical trials and patents on nanoparticle-based formulations that have applications in the treatment and diagnosis of lung cancer are also discussed.
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Affiliation(s)
- Parijat Pandey
- Department of Pharmaceutical Sciences, Gurugram University, Gurugram, 122018, Haryana, India
| | - Gunjan Nautiyal
- Department of Pharmaceutical Sciences, Gurugram University, Gurugram, 122018, Haryana, India
| | - Deepika Purohit
- Department of Pharmaceutical Sciences, Indira Gandhi University, Meerpur, Rewari, 123401, Haryana, India
| | - Sneh Lata
- Department of Pharmaceutical Sciences, Indira Gandhi University, Meerpur, Rewari, 123401, Haryana, India
| | - Virender Kumar
- College of Pharmacy, Pandit Bhagwat Dayal Sharma University of Health Sciences, Rohtak, 124001, Haryana, India
| | - Manish Makhija
- Department of Pharmaceutical Sciences, Indira Gandhi University, Meerpur, Rewari, 123401, Haryana, India
| | - Deeksha Manchanda
- Department of Pharmaceutical Sciences, Indira Gandhi University, Meerpur, Rewari, 123401, Haryana, India
| | - Neha Minocha
- Amity Institute of Pharmacy, Amity University, Gurugram, 122413, Haryana, India
- Chitkara University School of Pharmacy, Chitkara University, Himachal Pradesh, 174103, India
| | - Sunil Kumar
- Department of Pharmaceutical Sciences, Indira Gandhi University, Meerpur, Rewari, 123401, Haryana, India
| | - Deepak Kaushik
- Department of Pharmaceutical Sciences, Maharshi Dayanand University, Rohtak, 124001, Haryana, India
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Levy MV, Fandl HK, Hijmans JG, Stockelman KA, Ruzzene ST, Reiakvam WR, Goldthwaite ZA, Greiner JJ, DeSouza CA, Garcia VP. Effect of 17β-Estradiol on Endothelial Cell Expression of Inflammation- Related MicroRNA. Microrna 2025; 14:3-8. [PMID: 39069709 DOI: 10.2174/0122115366320085240716180112] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/17/2024] [Revised: 05/26/2024] [Accepted: 05/29/2024] [Indexed: 07/30/2024]
Abstract
BACKGROUND Estrogen plays a protective role in vascular health due, in part, to its regulation of endothelial inflammation. However, the mechanism(s) by which estrogen negatively regulates inflammatory signaling pathways is not completely understood. MicroRNAs (miRNAs) are recognized as sensitive and selective regulators of cardiovascular function, inflammation, and disease, yet the effects of 17β-estradiol on the endothelial miRNA profile are largely unknown. OBJECTIVE The aim of this study was to determine the effect of 17β-estradiol on the expression of inflammation-associated miRNAs in endothelial cells in vitro. METHODS Human Umbilical Vein Endothelial cells (HUVECs) were treated with media in the absence (control) and presence of 17β-estradiol (100 nM) for 24 hr. Thereafter, endothelial cell release of cytokines (IL-6 and IL-8), the intracellular expression of the central protein inflammatory mediator NF-κB, and the levels of inflammatory-associated miRNAs: miR-126, miR-146a, miR-181b, miR-204, and miR-Let-7a, were determined. RESULTS 17β-estradiol-treated cells released significantly lower levels of IL-6 (47.6±1.5 pg/mL vs. 59.3±4.9 pg/mL) and IL-8 (36.3±2.3 pg/mL vs. 44.0±2.0 pg/mL). Cellular expression of total NF-κB (26.0±2.8 AU vs. 21.2±3.1 AU) was not different between groups; however, activated NF-κB (Ser536) (12.9±1.7 AU vs. 20.2±2.2 AU) was markedly reduced in 17β-estradiol-treated cells as compared to untreated cells. Furthermore, cellular expressions of miR-126 (1.8±0.3 fold), miR-146a (1.7±0.3 fold), miR-181b (2.1±0.4 fold), miR-204 (1.9±0.4 fold), and miR-Let-7a (1.8±0.3 fold) were markedly increased in response to 17β-estradiol treatment. CONCLUSION These data suggest that the anti-inflammatory effect of 17β-estradiol in endothelial cells may be mediated by miRNAs.
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Affiliation(s)
- Ma'ayan V Levy
- Integrative Vascular Biology Laboratory, Department of Integrative Physiology, University of Colorado Boulder Boulder, CO 80309, United States
| | - Hannah K Fandl
- Integrative Vascular Biology Laboratory, Department of Integrative Physiology, University of Colorado Boulder Boulder, CO 80309, United States
| | - Jamie G Hijmans
- Integrative Vascular Biology Laboratory, Department of Integrative Physiology, University of Colorado Boulder Boulder, CO 80309, United States
| | - Kelly A Stockelman
- Integrative Vascular Biology Laboratory, Department of Integrative Physiology, University of Colorado Boulder Boulder, CO 80309, United States
| | - Samuel T Ruzzene
- Integrative Vascular Biology Laboratory, Department of Integrative Physiology, University of Colorado Boulder Boulder, CO 80309, United States
| | - Whitney R Reiakvam
- Integrative Vascular Biology Laboratory, Department of Integrative Physiology, University of Colorado Boulder Boulder, CO 80309, United States
| | - Zoe A Goldthwaite
- Integrative Vascular Biology Laboratory, Department of Integrative Physiology, University of Colorado Boulder Boulder, CO 80309, United States
| | - Jared J Greiner
- Integrative Vascular Biology Laboratory, Department of Integrative Physiology, University of Colorado Boulder Boulder, CO 80309, United States
| | - Christopher A DeSouza
- Integrative Vascular Biology Laboratory, Department of Integrative Physiology, University of Colorado Boulder Boulder, CO 80309, United States
| | - Vinicius P Garcia
- Integrative Vascular Biology Laboratory, Department of Integrative Physiology, University of Colorado Boulder Boulder, CO 80309, United States
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le Maire A, Bourguet W. What Structural Biology Tells Us About the Mode of Action and Detection of Toxicants. Annu Rev Pharmacol Toxicol 2025; 65:529-546. [PMID: 39107041 DOI: 10.1146/annurev-pharmtox-061724-080642] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 08/09/2024]
Abstract
The study of the adverse effects of chemical substances on living organisms is an old and intense field of research. However, toxicological and environmental health sciences have long been dominated by descriptive approaches that enable associations or correlations but relatively few robust causal links and molecular mechanisms. Recent achievements have shown that structural biology approaches can bring this added value to the field. By providing atomic-level information, structural biology is a powerful tool to decipher the mechanisms by which toxicants bind to and alter the normal function of essential cell components, causing adverse effects. Here, using endocrine-disrupting chemicals as illustrative examples, we describe recent advances in the structure-based understanding of their modes of action and how this knowledge can be exploited to develop computational tools aimed at predicting properties of large collections of compounds.
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Affiliation(s)
- Albane le Maire
- Centre de Biologie Structurale (CBS), Univ Montpellier, CNRS, Inserm, Montpellier, France; ,
| | - William Bourguet
- Centre de Biologie Structurale (CBS), Univ Montpellier, CNRS, Inserm, Montpellier, France; ,
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Skrzypczak M, Wolinska E, Adaszek Ł, Ortmann O, Treeck O. Epigenetic Modulation of Estrogen Receptor Signaling in Ovarian Cancer. Int J Mol Sci 2024; 26:166. [PMID: 39796024 PMCID: PMC11720219 DOI: 10.3390/ijms26010166] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/27/2024] [Revised: 12/21/2024] [Accepted: 12/25/2024] [Indexed: 01/13/2025] Open
Abstract
Ovarian cancer remains one of the leading causes of cancer-related deaths in women. There are several processes that are described to have a causal relationship in ovarian cancer development, progression, and metastasis formation, that occur both at the genetic and epigenetic level. One of the mechanisms involved in its pathogenesis and progression is estrogen signaling. Estrogen receptors (ER) α, ERβ, and G-protein coupled estrogen receptor 1 (GPER1), in concert with various coregulators and pioneer transcription factors, mediate the effects of estrogens primarily by the transcriptional regulation of estrogen responsive genes, thereby exerting pleiotropic effects including the regulation of cellular proliferation and apoptosis. The expression and activity of estrogen receptors and their coregulators have been demonstrated to be regulated by epigenetic mechanisms like histone modifications and DNA methylation. Here, we intend to summarize and to provide an update on the current understanding of epigenetic mechanisms regulating estrogen signaling and their role in ovarian cancer. For this purpose, we reviewed publications on this topic listed in the PubMed database. Finally, we assess to which extent drugs acting on the epigenetic level might be suitable for the treatment of ovarian cancer.
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Affiliation(s)
- Maciej Skrzypczak
- Chair and Department of Gynecology, Medical University of Lublin, 20-954 Lublin, Poland;
| | - Ewa Wolinska
- Department of Pathology, Medical University of Warsaw, 02-091 Warsaw, Poland;
| | - Łukasz Adaszek
- Clinic of Infectious Diseases, University of Life Sciences Lublin, 20-950 Lublin, Poland;
| | - Olaf Ortmann
- Department of Gynecology and Obstetrics, University Medical Center Regensburg, 93935 Regensburg, Germany;
| | - Oliver Treeck
- Department of Gynecology and Obstetrics, University Medical Center Regensburg, 93935 Regensburg, Germany;
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Singh G, Darwin R, Panda KC, Afzal SA, Katiyar S, Dhakar RC, Mani S. Gene expression and hormonal signaling in osteoporosis: from molecular mechanisms to clinical breakthroughs. JOURNAL OF BIOMATERIALS SCIENCE. POLYMER EDITION 2024:1-36. [PMID: 39729311 DOI: 10.1080/09205063.2024.2445376] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Subscribe] [Scholar Register] [Received: 11/17/2024] [Accepted: 12/17/2024] [Indexed: 12/28/2024]
Abstract
Osteoporosis is well noted to be a universal ailment that realization impaired bone mass and micro architectural deterioration thus enhancing the probability of fracture. Despite its high incidence, its management remains highly demanding because of the multifactorial pathophysiology of the disease. This review highlights recent findings in the management of osteoporosis particularly, gene expression and hormonal control. Some of the newest approaches regarding the subject are described, including single-cell RNA sequencing and long non-coding RNAs. Also, the review reflects new findings on hormonal signaling and estrogen and parathyroid hormone; patient-specific approaches due to genetic and hormonal variation. Potential new biomarkers and AI comprised as factors for improving the ability to anticipate and manage fractures. These hold great potential of new drugs, combination therapies and gene based therapies for osteoporosis in the future. Further studies and cooperation of scientists and clinicians will help to apply such novelties into practical uses in the sphere of medicine in order to enhance the treatment of patients with osteoporosis.
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Affiliation(s)
- Gurinderdeep Singh
- Department of Pharmaceutical Sciences and Drug Research, Punjabi University Patiala, Patiala, India
| | - Ronald Darwin
- School of Pharmaceutical Sciences, Vels Institute of Science Technology & Advanced Studies, Chennai, India
| | - Krishna Chandra Panda
- Department of Pharmaceutical Chemistry, Roland Institute of Pharmaceutical Sciences, Berhampur, India
| | - Shaikh Amir Afzal
- Department of Pharmaceutics, SCES's Indira College of Pharmacy, Pune, India
| | - Shashwat Katiyar
- Department of Biochemistry, School of Life Sciences and Biotechnology, Chhatrapati Shahu Ji Maharaj University, Kanpur, India
| | - Ram C Dhakar
- SRG Hospital and Medical College, Jhalawar, India
| | - Sangeetha Mani
- Sri Ramachandra Faculty of Pharmacy, Sri Ramachandra Institute of Higher Education and Research, Chennai, India
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Li HM, Gao YR, Liu C, Sheng YX, Pu YJ, Sun JH, Tian YN, Yang L, Ma HM, Xu HM. Preliminary Study on the Positive Expression Regulation of Alpha2-Macroglobulin in the Testicular Tissue of Male Mice by Environmental Estrogens. Int J Mol Sci 2024; 25:13434. [PMID: 39769199 PMCID: PMC11676208 DOI: 10.3390/ijms252413434] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 10/19/2024] [Revised: 12/06/2024] [Accepted: 12/13/2024] [Indexed: 01/11/2025] Open
Abstract
The male reproductive impairment caused by environmental estrogens (EEs) stands as a pivotal research area in environmental toxicology. Alpha2-macroglobulin (A2M) emerges as a promising molecule capable of counteracting oxidative stress induced by EEs. This study conducted exposure experiments spanning PND1 to PND56 employing ICR mice, aiming to delve into the expression patterns of A2M and its modulated IL-6 in the testicular tissue of mice subsequent to diethylstilbestrol (DES) and benzophenone (BP) exposure, while elucidating the pivotal role of ERs in this intricate process. Our findings revealed that upon DES exposure (10 and 100 nM), there was a pronounced upregulation of A2M (mRNA and in situ protein levels) in mouse testicular tissue. Similarly, exposure to BPs (BP-1, BP-2, and BP-3, each at 10 and 1000 nM) exhibited comparable effects and increasing A2M levels in serum. Notably, BP exposure also caused an elevation in IL-6 levels (which could be directly regulated by A2M) within testicular tissue (mRNA and in situ protein). Remarkably, the specific estrogen receptor antagonist ICI 182780 (0.5 mg/kg/day) was effective in reversing the upregulation of both A2M and IL-6 induced by BP exposure. Significantly, the results of theoretical prediction of the potential ERE site in the A2m gene promoter region and ChIP-qPCR experiment provide essential and strong evidence for the key conclusion that A2m is the target gene of ER. Taken together, our study highlights EEs' ability to regulate A2M expression in the male reproductive system via the ER signaling pathway. This vital insight deepens our understanding of molecular mechanisms protecting against oxidative stress caused by EEs.
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Affiliation(s)
- Hong-Mei Li
- The Key Laboratory of Fertility Preservation and Maintenance of the Ministry of Education, Ningxia Medical University, Yinchuan 750004, China; (H.-M.L.); (Y.-R.G.); (C.L.); (Y.-X.S.); (Y.-J.P.); (J.-H.S.); (Y.-N.T.)
- School of Basic Medicine, Ningxia Medical University, Yinchuan 750004, China
- School of Public Health, Ningxia Medical University, Yinchuan 750004, China
| | - Yan-Rong Gao
- The Key Laboratory of Fertility Preservation and Maintenance of the Ministry of Education, Ningxia Medical University, Yinchuan 750004, China; (H.-M.L.); (Y.-R.G.); (C.L.); (Y.-X.S.); (Y.-J.P.); (J.-H.S.); (Y.-N.T.)
- School of Basic Medicine, Ningxia Medical University, Yinchuan 750004, China
- School of Public Health, Ningxia Medical University, Yinchuan 750004, China
| | - Chang Liu
- The Key Laboratory of Fertility Preservation and Maintenance of the Ministry of Education, Ningxia Medical University, Yinchuan 750004, China; (H.-M.L.); (Y.-R.G.); (C.L.); (Y.-X.S.); (Y.-J.P.); (J.-H.S.); (Y.-N.T.)
- School of Basic Medicine, Ningxia Medical University, Yinchuan 750004, China
| | - Yu-Xin Sheng
- The Key Laboratory of Fertility Preservation and Maintenance of the Ministry of Education, Ningxia Medical University, Yinchuan 750004, China; (H.-M.L.); (Y.-R.G.); (C.L.); (Y.-X.S.); (Y.-J.P.); (J.-H.S.); (Y.-N.T.)
- School of Basic Medicine, Ningxia Medical University, Yinchuan 750004, China
- School of Public Health, Ningxia Medical University, Yinchuan 750004, China
| | - Ya-Jia Pu
- The Key Laboratory of Fertility Preservation and Maintenance of the Ministry of Education, Ningxia Medical University, Yinchuan 750004, China; (H.-M.L.); (Y.-R.G.); (C.L.); (Y.-X.S.); (Y.-J.P.); (J.-H.S.); (Y.-N.T.)
- School of Basic Medicine, Ningxia Medical University, Yinchuan 750004, China
- School of Public Health, Ningxia Medical University, Yinchuan 750004, China
| | - Jia-He Sun
- The Key Laboratory of Fertility Preservation and Maintenance of the Ministry of Education, Ningxia Medical University, Yinchuan 750004, China; (H.-M.L.); (Y.-R.G.); (C.L.); (Y.-X.S.); (Y.-J.P.); (J.-H.S.); (Y.-N.T.)
- School of Basic Medicine, Ningxia Medical University, Yinchuan 750004, China
| | - Ya-Nan Tian
- The Key Laboratory of Fertility Preservation and Maintenance of the Ministry of Education, Ningxia Medical University, Yinchuan 750004, China; (H.-M.L.); (Y.-R.G.); (C.L.); (Y.-X.S.); (Y.-J.P.); (J.-H.S.); (Y.-N.T.)
- School of Basic Medicine, Ningxia Medical University, Yinchuan 750004, China
| | - Li Yang
- Laboratory Animal Centre, Ningxia Medical University, Yinchuan 750004, China
| | - Hui-Ming Ma
- The Key Laboratory of Fertility Preservation and Maintenance of the Ministry of Education, Ningxia Medical University, Yinchuan 750004, China; (H.-M.L.); (Y.-R.G.); (C.L.); (Y.-X.S.); (Y.-J.P.); (J.-H.S.); (Y.-N.T.)
- School of Basic Medicine, Ningxia Medical University, Yinchuan 750004, China
| | - Hai-Ming Xu
- The Key Laboratory of Fertility Preservation and Maintenance of the Ministry of Education, Ningxia Medical University, Yinchuan 750004, China; (H.-M.L.); (Y.-R.G.); (C.L.); (Y.-X.S.); (Y.-J.P.); (J.-H.S.); (Y.-N.T.)
- School of Public Health, Ningxia Medical University, Yinchuan 750004, China
- The Key Laboratory of Environmental Factors and Chronic Disease Control, Ningxia Medical University, Yinchuan 750004, China
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Medoro A, Davinelli S, Fogacci F, Alfieri S, Tiso D, Cicero AFG, Scapagnini G. Palmitoylethanolamide in Postmenopausal Metabolic Syndrome: Current Evidence and Clinical Perspectives. Nutrients 2024; 16:4313. [PMID: 39770936 PMCID: PMC11677032 DOI: 10.3390/nu16244313] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/15/2024] [Revised: 12/03/2024] [Accepted: 12/11/2024] [Indexed: 01/11/2025] Open
Abstract
Menopause leads to a decline in estrogen levels, resulting in significant metabolic alterations that increase the risk of developing metabolic syndrome-a cluster of conditions including central obesity, insulin resistance, dyslipidemia, and hypertension. Traditional interventions such as hormone replacement therapy carry potential adverse effects, and lifestyle modifications alone may not suffice for all women. This review explores the potential role of palmitoylethanolamide (PEA), an endogenous fatty acid amide, in managing metabolic syndrome during the postmenopausal period. PEA primarily acts by activating peroxisome proliferator-activated receptor-alpha (PPAR-α), influencing lipid metabolism, energy homeostasis, and inflammation. Evidence indicates that PEA may promote the browning of white adipocytes, enhancing energy expenditure and reducing adiposity. It also improves lipid profiles by boosting fatty acid oxidation and decreasing lipid synthesis, potentially lowering low-density lipoprotein cholesterol and triglyceride levels while increasing high-density lipoprotein cholesterol. Additionally, the anti-inflammatory properties of PEA enhance insulin sensitivity by reducing pro-inflammatory cytokines that interfere with insulin signaling. PEA may aid in weight management by influencing appetite regulation and improving leptin sensitivity. Furthermore, its neuroprotective effects may address the mood disturbances and cognitive decline associated with menopause. Given these multifaceted biological activities and a favorable safety profile, PEA may represent a promising non-pharmacological supplement for managing metabolic syndrome in postmenopausal women. However, further large-scale clinical studies are necessary to establish its efficacy, optimal dosing, and long-term safety. If validated, PEA could become an integral part of strategies to improve metabolic and neuropsychological health outcomes in this population.
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Affiliation(s)
- Alessandro Medoro
- Department of Medicine and Health Sciences “V.Tiberio”, University of Molise, 86100 Campobasso, Italy; (A.M.); (G.S.)
| | - Sergio Davinelli
- Department of Medicine and Health Sciences “V.Tiberio”, University of Molise, 86100 Campobasso, Italy; (A.M.); (G.S.)
| | - Federica Fogacci
- Hypertension and Cardiovascular Risk Research Unit, Medical and Surgical Sciences Department, Alma Mater Studiorum University of Bologna, 40138 Bologna, Italy; (F.F.); (A.F.G.C.)
- Italian Nutraceutical Society (SINut), 40138 Bologna, Italy
| | | | - Domenico Tiso
- Clinical Nutrition, “Villa Maria” Hospital, 47921 Rimini, Italy;
| | - Arrigo F. G. Cicero
- Hypertension and Cardiovascular Risk Research Unit, Medical and Surgical Sciences Department, Alma Mater Studiorum University of Bologna, 40138 Bologna, Italy; (F.F.); (A.F.G.C.)
- Italian Nutraceutical Society (SINut), 40138 Bologna, Italy
- Cardiovascular Medicine Unit, IRCCS Azienda Ospedaliero-Universitaria di Bologna, 40138 Bologna, Italy
| | - Giovanni Scapagnini
- Department of Medicine and Health Sciences “V.Tiberio”, University of Molise, 86100 Campobasso, Italy; (A.M.); (G.S.)
- Italian Nutraceutical Society (SINut), 40138 Bologna, Italy
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Li J, Chen Y, Li S, Zhang X, Cheng Y, Fu X, Li J, Zhu L. Estrogen Receptor β Alleviates Colitis by Inhibiting Ferroptosis in Intestinal Epithelial Cells. J Inflamm Res 2024; 17:10785-10805. [PMID: 39677282 PMCID: PMC11645966 DOI: 10.2147/jir.s492290] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/22/2024] [Accepted: 11/15/2024] [Indexed: 12/17/2024] Open
Abstract
Background Ulcerative colitis (UC), a major type of inflammatory bowel disease, is characterized by chronic inflammation of the colonic mucosa and submucosa. Estrogen receptor β (ERβ) predominates in the colon and exerts anti-inflammatory effects. Ferroptosis, a recently discovered form of iron-dependent programmed cell death, is implicated in the pathogenesis of several diseases, including UC. However, the link between ferroptosis and the anti-inflammatory actions of ERβ in UC remains to be elucidated. Methods We analyzed colonic mucosal samples from inflammatory and non-inflammatory regions of UC patients to assess ferroptosis levels. Experimental colitis was induced in wild-type C57BL/6 mice and intestinal epithelial cell-specific ERβ knockout (ERβ-/-) mice using dextran sulfate sodium (DSS). We measured body weight, colon length, disease activity index (DAI), and histopathological scores. RNA sequencing was performed to identify differentially expressed genes and related signaling pathways, with additional ferroptosis assessment in vivo and in vitro through biochemical markers and cellular assays. Results In UC patients, ferroptosis was significantly elevated in inflammatory mucosal regions compared to non-inflammatory areas. Compared to the wild-type counterparts, ERβ-/- mice exacerbated DSS-induced experimental colitis, including reduced body weight, shortened colon length, and higher DAI scores. RNA sequencing showed enrichment of inflammatory and immune response pathways, with significant activation of JAK/STAT, NF-κB, and TNF signaling in ERβ-/- mice. ERβ deficiency induced ferroptosis in both in vitro and in vivo models. Ferroptosis indicators such as PTGS2 were upregulated, GPX4 expression was downregulated, and there were increases in malondialdehyde, iron content, reactive oxygen species, and mitochondrial damage. Conclusion Our findings demonstrate that ERβ deficiency exacerbates colitis and enhances ferroptosis in IECs. ERβ positively regulates GPX4 transcription, thereby inhibiting ferroptosis and alleviating colitis. These insights suggest that modulation of ERβ and its regulation of ferroptosis may represent a novel therapeutic strategy for UC.
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Affiliation(s)
- Junrong Li
- Division of Gastroenterology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, People’s Republic of China
- Division of Gastroenterology, Chongqing Hospital Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Chongqing, People’s Republic of China
| | - Yidong Chen
- Division of Gastroenterology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, People’s Republic of China
| | - Shuang Li
- Division of Gastroenterology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, People’s Republic of China
| | - Xiaopeng Zhang
- Division of Gastroenterology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, People’s Republic of China
| | - Yiyu Cheng
- Division of Gastroenterology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, People’s Republic of China
| | - Xiaoyu Fu
- Division of Gastroenterology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, People’s Republic of China
| | - Jiamin Li
- Division of Gastroenterology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, People’s Republic of China
| | - Liangru Zhu
- Division of Gastroenterology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, People’s Republic of China
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Alharbi A, Alhujaily M. Molecular Mechanism of Indoor Exposure to Airborne Halogenated Flame Retardants TCIPP (Tris(1,3-Dichloro-2-Propyl) Phosphate) and TCEP Tris(2-chloroethyl) Phosphate and Their Hazardous Effects on Biological Systems. Metabolites 2024; 14:697. [PMID: 39728479 DOI: 10.3390/metabo14120697] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 07/15/2024] [Revised: 08/05/2024] [Accepted: 11/22/2024] [Indexed: 12/28/2024] Open
Abstract
TCIPP (tris(1,3-dichloro-2-propyl) phosphate) and TCEP (tris(2-chloroethyl) phosphate) are organophosphate ester flame retardants found in various consumer products, posing significant health and environmental risks through inhalation, ingestion, and dermal exposure. Research reveals these compounds cause oxidative stress, inflammation, endocrine disruption, genotoxicity, neurotoxicity, and potentially hepatotoxicity, nephrotoxicity, cardiotoxicity, developmental, reproductive, and immunotoxicity. This review summarizes the current knowledge on the toxicological mechanisms of TCIPP and TCEP and presents the latest data on their toxicological effects obtained in vitro and in vivo, using omic systems, and on the basis of computational modelling. It also elaborates on the scope of further toxicities and highlights the necessity of ongoing mechanistic research, integration of new technologies, and successful transfer of the acquired knowledge into risk evaluation, policies and regulations, and the creation of safer products. Since flame retardants are already present in homes, schools, offices, and daycare centres, efforts to scale back the exposure to these chemicals, most especially the hazardous ones, must be made to protect human health and the environment. Therefore, effective and timely prevention, based upon a deep knowledge of the entire toxicological profile of these substances, is the only way to face this difficult toxicological issue and provide for a healthy and safe future.
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Affiliation(s)
- Albatul Alharbi
- Department of Clinical Laboratory Sciences, College of Applied Medical Sciences, University of Bisha, Bisha 61922, Saudi Arabia
| | - Muhanad Alhujaily
- Department of Clinical Laboratory Sciences, College of Applied Medical Sciences, University of Bisha, Bisha 61922, Saudi Arabia
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Gehling GM, Alfaqih M, Pruinelli L, Starkweather A, Dungan JR. A systematic review of candidate genes and their relevant pathways for metastasis among adults diagnosed with breast cancer. Breast Cancer Res 2024; 26:165. [PMID: 39593069 PMCID: PMC11590482 DOI: 10.1186/s13058-024-01914-6] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/24/2024] [Accepted: 11/05/2024] [Indexed: 11/28/2024] Open
Abstract
BACKGROUND Presently incurable, metastatic breast cancer is estimated to occur in as many as 30% of those diagnosed with early-stage breast cancer. Timely and accurate identification of those at risk for developing metastasis using validated biomarkers has the potential to have profound impact on overall survival rates. Our primary goal was to conduct a systematic review and synthesize the existing body of scientific knowledge on the candidate genes and their respective single nucleotide polymorphisms associated with metastasis-related outcomes among patients diagnosed with breast cancer. This knowledge is critical to inform future hypothesis-driven and validation research aimed at enhancing clinical decision-making for breast cancer patients. METHODS Using PRISMA guidelines, literature searches were conducted on September 13th, 2023, using PubMed and Embase databases. The systematic review protocol was registered with INPLASY (DOI: https://doi.org/10.37766/inplasy2024.8.0014 ). Covidence software was used to facilitate the screening and article extraction processes. Peer-reviewed articles were selected if authors reported on single nucleotide polymorphisms directly associated with metastasis among adults diagnosed with breast cancer. FINDINGS We identified 451 articles after 44 duplicates were removed resulting in 407 articles to be screened for study inclusion. Three reviewers completed the article screening process which resulted in 86 articles meeting the study inclusion criteria. Sampling varied across studies with the majority utilizing a case-control design (n = 75, 87.2%), with sample sizes ranging from 23 to 1,017 participants having mean age 50.65 ± 4.50 (min-max: 20-75). The synthesis of this internationally generated evidence revealed that the scientific area on the underlying biological contributions to breast cancer metastasis remains predominantly exploratory in nature (n = 74, 86%). Of the 12 studies with reported power analyses, only 9 explicitly stated the power values which ranged from 47.88 to 99%. DISCUSSION Understanding the underlying biological mechanisms contributing to metastasis is a critical component for precision oncological therapeutics and treatment approaches. Current evidence investigating the contribution of SNPs to the development of metastasis is characterized by underpowered candidate gene studies. To inform individualized precision health practices and improve breast cancer survival outcomes, future hypothesis-driven research is needed to replicate these associations in larger, more diverse datasets.
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Affiliation(s)
- Gina M Gehling
- College of Nursing, University of Florida, 1225 Center Dr, PO BOX 100197, Gainesville, FL, 32610-1097, USA
| | - Miad Alfaqih
- College of Medicine, University of Florida, Gainesville, FL, USA
| | - Lisiane Pruinelli
- College of Nursing, University of Florida, 1225 Center Dr, PO BOX 100197, Gainesville, FL, 32610-1097, USA
| | - Angela Starkweather
- College of Nursing, University of Florida, 1225 Center Dr, PO BOX 100197, Gainesville, FL, 32610-1097, USA
| | - Jennifer R Dungan
- College of Nursing, University of Florida, 1225 Center Dr, PO BOX 100197, Gainesville, FL, 32610-1097, USA.
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Han K, Choi G, Kim TJ. Fluorescence-based techniques for investigating estrogen receptor dynamics. BMB Rep 2024; 57:472-483. [PMID: 39219049 PMCID: PMC11608856] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/20/2024] [Revised: 07/03/2024] [Accepted: 07/17/2024] [Indexed: 09/04/2024] Open
Abstract
Understanding estrogen receptor (ER) signaling pathways is crucial for uncovering the mechanisms behind estrogen-related diseases, such as breast cancer, and addressing the effects of environmental estrogenic disruptors. Traditionally, ER signaling involves genomic events, including ligand binding, receptor dimerization, and transcriptional modulation within cellular nuclei. However, recent research have revealed ERs also participate in non-genomic signaling pathways, adding complexity to their functions. Researchers use advanced fluorescence-based techniques, leveraging fluorescent probes (FPb) to study ER dynamics in living cells, such as spatial distribution, expression kinetics, and functional activities. This review systematically examines the application of fluorescent probes in ER signaling research, covering the visualization of ER, ligandreceptor interactions, receptor dimerization, estrogen response elements (EREs)-mediated transcriptional activation, and G-proteincoupled estrogen receptor (GPER) signaling. Our aim is to provide researchers with valuable insights for employing FPb in their explorations of ER signaling. [BMB Reports 2024; 57(11): 472-483].
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Affiliation(s)
- Kiseok Han
- Department of Integrated Biological Science, Pusan National University, Busan 46241, Korea
| | - Gyuho Choi
- Department of Integrated Biological Science, Pusan National University, Busan 46241, Korea
| | - Tae-Jin Kim
- Department of Integrated Biological Science, Pusan National University, Busan 46241, Korea
- Department of Biological Sciences, Pusan National University, Busan 46241, Korea
- Institute of Systems Biology, Pusan National University, Busan 46241, Korea
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Lou Y, Jiang F, Guan J. The effect of lipidomes on the risk of endometrioid endometrial cancer: a Mendelian randomization study. Front Oncol 2024; 14:1436955. [PMID: 39493450 PMCID: PMC11527595 DOI: 10.3389/fonc.2024.1436955] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/22/2024] [Accepted: 10/01/2024] [Indexed: 11/05/2024] Open
Abstract
Objective This study aimed to explore the potential effects between various human plasma lipidomes and endometrioid endometrial cancer (EEC) by using Mendelian randomization (MR) methods. Methods This study designated a total of 179 human plasma lipidomes from the genome-wide association study (GWAS) database as the exposure variable. An EEC-related dataset from the GWAS (GCST006465) served as the outcome variable. MR analyses used the inverse variance-weighted method (IVW), MR-Egger, weighted median, simple mode, and weighted mode methods for regression calculations, accounting for possible biases induced by linkage disequilibrium and weak instrument variables. Any lipidomes failing to pass heterogeneity and horizontal pleiotropy tests were deemed to lack significant causal impact on the outcome. Results The results of IVW analysis disclosed that a variety of human plasma lipidomes (n = 15) exhibited a significant causal effect on EEC (p < 0.05). A subset of these lipidomes (n = 13) passed heterogeneity and horizontal pleiotropy tests, which demonstrated consistent and viable causal effects (p < 0.05) including glycerophospholipids, glycerolipids, and sterols. Specifically, phosphatidylcholine (odds ratio [OR]: 1.065-1.129, p < 0.05) exhibited a significant positive causal effect on the occurrence of EEC. Conversely, sterol ester (OR = 0.936, p = 0.007), diacylglycerol (OR = 0.914, p = 0.036), phosphatidylcholine (OR: 0.903-0.927, p < 0.05), phosphatidylethanolamine (OR = 0.907, p = 0.046) and triacylglycerol (OR: 0.880-0.924, p < 0.05) showed a notable negative causal association with EEC, suggesting their inhibitory effects on the EEC occurrence. Conclusions The study revealed that human plasma lipidomes have complex impacts on EEC through Mendelian randomization. This indicated that the diversity of structural changes in lipidomes could show different effects on subtypes and then affect EEC occurrence. Although these lipids had the potential to be promising biomarkers, they needed to be further clinically validated nevertheless.
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Affiliation(s)
- Yaochen Lou
- Department of Gynecology, Obstetrics and Gynecology Hospital of Fudan University, Shanghai, China
| | - Feng Jiang
- Department of Neonatology, Obstetrics and Gynecology Hospital of Fudan University, Shanghai, China
| | - Jun Guan
- Department of Gynecology, Obstetrics and Gynecology Hospital of Fudan University, Shanghai, China
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Chen F, Zhu M, Li W. Advances in research on malignant transformation of endometriosis-associated ovarian cancer. Front Oncol 2024; 14:1475231. [PMID: 39445058 PMCID: PMC11496038 DOI: 10.3389/fonc.2024.1475231] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Grants] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/03/2024] [Accepted: 09/10/2024] [Indexed: 10/25/2024] Open
Abstract
Endometriosis (EMs) is a prevalent chronic gynecological condition that depends on estrogen, marked by the presence of active endometrial tissue (glands and stroma) outside the uterus. Although pathologically benign, it exhibits biological behaviors such as invasion and metastasis akin to malignant tumors. Endometriosis-associated ovarian carcinoma (EAOC), arising from malignant transformation of EMs, poses significant clinical challenges. However, the mechanisms underlying EAOC pathogenesis remain incompletely understood, with a lack of reliable biomarkers for early diagnosis and personalized treatment strategies. Considering the significant number of EMs patients and the extended period during which malignant transformation can occur, EAOC deserves significant attention. Current research both domestically and internationally indicates that the pathogenesis of EAOC is complex, involving genetic mutations, immune microenvironment, oxidative stress, epigenetic changes, and related areas. This review summarizes the mechanisms underlying the development of EAOC.
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Affiliation(s)
- Fang Chen
- Department of Gynecology, People’s Hospital of Liaoning Province, Shenyang, China
| | - Mengying Zhu
- Liaoning University of Traditional Chinese Medicine, Shenyang, China
| | - Wenjuan Li
- Department of Gynecology, People’s Hospital of Liaoning Province, Shenyang, China
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Gaxiola-Rubio A, Jave-Suárez LF, Hernández-Silva CD, Ramírez-de-Arellano A, Villegas-Pineda JC, Lizárraga-Ledesma MDJ, Ramos-Solano M, Diaz-Palomera CD, Pereira-Suárez AL. The G-Protein-Coupled Estrogen Receptor Agonist G-1 Mediates Antitumor Effects by Activating Apoptosis Pathways and Regulating Migration and Invasion in Cervical Cancer Cells. Cancers (Basel) 2024; 16:3292. [PMID: 39409923 PMCID: PMC11475807 DOI: 10.3390/cancers16193292] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/28/2024] [Revised: 09/20/2024] [Accepted: 09/24/2024] [Indexed: 10/20/2024] Open
Abstract
BACKGROUND/OBJECTIVES Estrogens and HPV are necessary for cervical cancer (CC) development. The levels of the G protein-coupled estrogen receptor (GPER) increase as CC progresses, and HPV oncoproteins promote GPER expression. The role of this receptor is controversial due to its anti- and pro-tumor effects. This study aimed to determine the effect of GPER activation, using its agonist G-1, on the transcriptome, cell migration, and invasion in SiHa cells and non-tumorigenic keratinocytes transduced with the HPV16 E6 or E7 oncogenes. METHODS Transcriptome analysis was performed to identify G-1-enriched pathways in SiHa cells. We evaluated cell migration, invasion, and the expression of associated proteins in SiHa, HaCaT-16E6, and HaCaT-16E7 cells using various assays. RESULTS Transcriptome analysis revealed pathways associated with proliferation/apoptosis (TNF-α signaling, UV radiation response, mitotic spindle formation, G2/M cell cycle, UPR, and IL-6/JAK/STAT), cellular metabolism (oxidative phosphorylation), and cell migration (angiogenesis, EMT, and TGF-α signaling) in SiHa cells. Key differentially expressed genes included PTGS2 (pro/antitumor), FOSL1, TNFRSF9, IL1B, DIO2, and PHLDA1 (antitumor), along with under-expressed genes with pro-tumor effects that may inhibit proliferation. Additionally, DKK1 overexpression suggested inhibition of cell migration. G-1 increased vimentin expression in SiHa cells and reduced it in HaCaT-16E6 and HaCaT-16E7 cells. However, G-1 did not affect α-SMA expression or cell migration in any of the cell lines but increased invasion in HaCaT-16E7 cells. CONCLUSIONS GPER is a promising prognostic marker due to its ability to activate apoptosis and inhibit proliferation without promoting migration/invasion in CC cells. G-1 could potentially be a tool in the treatment of this neoplasia.
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Affiliation(s)
- Abigail Gaxiola-Rubio
- Instituto de Investigación en Ciencias Biomédicas, Centro Universitario de Ciencias de la Salud, Universidad de Guadalajara, Guadalajara 44340, Mexico; (A.G.-R.); (A.R.-d.-A.)
| | - Luis Felipe Jave-Suárez
- División de Inmunología, Centro de Investigación Biomédica de Occidente (CIBO), Instituto Mexicano del Seguro Social (IMSS), Guadalajara 44340, Mexico
| | - Christian David Hernández-Silva
- Departamento de Microbiología y Patología, Centro Universitario de Ciencias de la Salud, Universidad de Guadalajara, Guadalajara 44340, Mexico; (C.D.H.-S.); (J.C.V.-P.); (M.d.J.L.-L.); (M.R.-S.)
| | - Adrián Ramírez-de-Arellano
- Instituto de Investigación en Ciencias Biomédicas, Centro Universitario de Ciencias de la Salud, Universidad de Guadalajara, Guadalajara 44340, Mexico; (A.G.-R.); (A.R.-d.-A.)
| | - Julio César Villegas-Pineda
- Departamento de Microbiología y Patología, Centro Universitario de Ciencias de la Salud, Universidad de Guadalajara, Guadalajara 44340, Mexico; (C.D.H.-S.); (J.C.V.-P.); (M.d.J.L.-L.); (M.R.-S.)
| | - Marisa de Jesús Lizárraga-Ledesma
- Departamento de Microbiología y Patología, Centro Universitario de Ciencias de la Salud, Universidad de Guadalajara, Guadalajara 44340, Mexico; (C.D.H.-S.); (J.C.V.-P.); (M.d.J.L.-L.); (M.R.-S.)
| | - Moisés Ramos-Solano
- Departamento de Microbiología y Patología, Centro Universitario de Ciencias de la Salud, Universidad de Guadalajara, Guadalajara 44340, Mexico; (C.D.H.-S.); (J.C.V.-P.); (M.d.J.L.-L.); (M.R.-S.)
| | - Carlos Daniel Diaz-Palomera
- Instituto de Investigación en Ciencias Biomédicas, Centro Universitario de Ciencias de la Salud, Universidad de Guadalajara, Guadalajara 44340, Mexico; (A.G.-R.); (A.R.-d.-A.)
| | - Ana Laura Pereira-Suárez
- Instituto de Investigación en Ciencias Biomédicas, Centro Universitario de Ciencias de la Salud, Universidad de Guadalajara, Guadalajara 44340, Mexico; (A.G.-R.); (A.R.-d.-A.)
- Departamento de Microbiología y Patología, Centro Universitario de Ciencias de la Salud, Universidad de Guadalajara, Guadalajara 44340, Mexico; (C.D.H.-S.); (J.C.V.-P.); (M.d.J.L.-L.); (M.R.-S.)
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Logan R, Shelton M, Horan N, Xue X, Maturin L, Eacret D, Michaud J, Singh N, Williams B, Gamble M, Seggio J, Kuppe-Fish M, Phan B, Tseng G, Blendy J, Woods LS, Palmer A, George O, Seney M. Sex-specific Concordance of Striatal Transcriptional Signatures of Opioid Addiction in Human and Rodent Brains. RESEARCH SQUARE 2024:rs.3.rs-5006061. [PMID: 39399686 PMCID: PMC11469374 DOI: 10.21203/rs.3.rs-5006061/v1] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Grants] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 10/15/2024]
Abstract
Opioid use disorder (OUD) has emerged as a severe, ongoing public health emergency. Current, frontline addiction treatment strategies fail to produce lasting abstinence in most users. This underscores the lasting effects of chronic opioid exposure and emphasizes the need to understand the molecular mechanisms of drug seeking and taking, but also how those alterations persist through acute and protracted withdrawal. Here, we used RNA sequencing in post-mortem human tissue from males (n=10) and females (n=10) with OUD and age and sex-matched comparison subjects. We compared molecular alterations in the nucleus accumbens (NAc) and dorsolateral prefrontal cortex (DLPFC) between humans with OUD and rodent models across distinct stages of opioid use and withdrawal (acute and prolonged) using differential gene expression and network-based approaches. We found that the molecular signature in the NAc of females with OUD mirrored effects seen in the NAc of female mice at all stages of exposure. Conversely, males with OUD showed strong overlap in expression profile with rats in acute withdrawal. Co-expression networks involved in post-transcriptional modification of RNA and epigenetic modification of chromatin state. This study provides fundamental insight into the converging molecular pathways altered by opioids across species. Further, this work helps to disentangle which alterations observed in humans with OUD are driven by acute drug exposure and which alterations are consequences of chronic exposure.
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Affiliation(s)
- Ryan Logan
- University of Massachusetts Chan Medical School
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Zhang Y, Li C, Liu L, Xu W, Wang D, Wang J. Edible bird's nest improves hemorheology and immune function in mice with transplanted uterine leiomyomas. Am J Transl Res 2024; 16:5063-5073. [PMID: 39398590 PMCID: PMC11470319 DOI: 10.62347/jpge5268] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/20/2024] [Accepted: 07/26/2024] [Indexed: 10/15/2024]
Abstract
OBJECTIVE To investigate the effect of edible bird's nest (EBN) on tumor growth, hemorheology and immune function of mice with transplanted uterine myomas. METHODS A subcutaneous tumor model of human uterus myoma was established in mice, and the mice were randomly divided into a model group, EBN group, estradiol receptor (ER) group and ER+EBN group. Body weight and tumor volume were measured at 2 weeks, 4 weeks and 8 weeks after the uterus myoma transplantation. Eight weeks after transplantation, the tumor weight was assessed, the morphology of different organs was observed, and the pathological changes of the uterus myoma was observed. Besides, the levels of ER and progesterone receptor (PR), various hemorheological parameters (including hematocrit, plasma viscosity and whole blood viscosity under different shearing conditions), and immune functions (CD3 +, CD4 + and CD8 + cells) were also measured. Enzyme-linked immunosorbent assay (ELISA) was used to detect the levels of tumor necrosis factor-α (TNF-α), interleukin-2 (IL-2), nitricoxidesynthase (NOS) and vascular endothelial growth factor (VEGF) in each group. RESULTS There were no statistical differences in body weight, tumor weight, tumor volume, uterus myoma pathology or the levels of ER and PR between the model group and EBN group, nor between the ER group and ER+EBN group (all P>0.05). Similarly, no notable morphological differences were observed in the heart, liver, spleen, lung, kidney, stomach, intestines and uterus among different groups (all P>0.05). However, in contrast to the model group, the EBN group exhibited significant reductions in hemorheology indicators, the proportion of CD8 + cells, as well as the levels of TNF-α, NOS and VEGF (all P<0.05). Conversely, the proportion of CD3 + and CD4 + cells, the CD4 +/CD8 + ratio and the level of IL-2 in the EBN group were obviously increased (all P<0.05). Compared with the ER group, the proportion of CD8 + cells, the levels of TNF-α, NOS and VEGF in the ER+EBN group were significantly decreased while the proportion of CD3 + and CD4 + cells, the CD4 +/CD8 + ratio and the level of IL-2 in the ER+EBN group were obviously increased. CONCLUSION For mice with uterine myoma transplantation, EBN does not influence tumor growth but significantly regulates hemorheology and enhances immune function.
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Affiliation(s)
- Yan Zhang
- Department of Nutriology, Qingdao Hiser Hospital Affiliated of Qingdao UniversityQingdao, Shandong, China
| | - Cui Li
- Key Laboratory of Chemical Biology (Ministry of Education), NMPA Key Laboratory for Quality Research and Evaluation of Carbohydrate-Based Medicine, Department of Pharmacology, School of Pharmaceutical Sciences, Cheeloo College of Medicine, Shandong UniversityJi’nan, Shandong, China
| | - Luxi Liu
- Department of Nutriology, Qingdao Hiser Hospital Affiliated of Qingdao UniversityQingdao, Shandong, China
| | - Wei Xu
- Department of Nutriology, Qingdao Hiser Hospital Affiliated of Qingdao UniversityQingdao, Shandong, China
| | - Dongliang Wang
- Hebei Edible Bird’s Nest Fresh Stew Technology Innovation CenterLangfang, Hebei, China
| | - Junjie Wang
- Department of Gynecologic Tumor (II), Qingdao Central Hospital, University of Health and Rehabilitation Sciences (Qingdao Central Medical Group)Qingdao, Shandong, China
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Bali S, Hall K, Massoud RI, Almeida NMS, Wilson AK. Interaction of Per- and Polyfluoroalkyl Substances with Estrogen Receptors in Rainbow Trout ( Oncorhynchus mykiss): An In Silico Investigation. ENVIRONMENTAL SCIENCE & TECHNOLOGY 2024; 58:15960-15970. [PMID: 39207093 PMCID: PMC11394024 DOI: 10.1021/acs.est.4c03648] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Subscribe] [Scholar Register] [Received: 04/12/2024] [Revised: 07/22/2024] [Accepted: 07/23/2024] [Indexed: 09/04/2024]
Abstract
Fresh water sources, including lakes, such as the Great Lakes, are some of the most important ecosystems in the world. Despite the importance of these lakes, there is increasing concern about the presence of per- and polyfluoroalkyl substances (PFAS)─among the most prevalent contaminants of our time─due to the ability of PFAS to bioaccumulate and persist in the environment, as well as to its linkages to detrimental human and animal health effects. In this study, PFAS exposure on rainbow trout (Oncorhynchus mykiss) is examined at the molecular level, focusing on the impact of PFAS binding on the alpha (α) and beta (β) estrogen receptors (ERs) using molecular dynamics simulations, binding free energy calculations, and structural analysis. ERs are involved in fundamental physiological processes, including reproductive system development, muscle regeneration, and immunity. This study shows that PFAS binds to both the estrogen α and estrogen β receptors, albeit via different binding modes, due to a modification of an amino acid in the binding site as a result of a reorientation of residues in the binding pocket. As ER overactivation can occur through environmental toxins and pollutants, this study provides insights into the influence of different types of PFAS on protein function.
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Affiliation(s)
- Semiha
Kevser Bali
- Department of Chemistry, Michigan
State University, East Lansing, Michigan 48824, United States
| | - Kyleen Hall
- Department of Chemistry, Michigan
State University, East Lansing, Michigan 48824, United States
| | - Rana I. Massoud
- Department of Chemistry, Michigan
State University, East Lansing, Michigan 48824, United States
| | - Nuno M. S. Almeida
- Department of Chemistry, Michigan
State University, East Lansing, Michigan 48824, United States
| | - Angela K. Wilson
- Department of Chemistry, Michigan
State University, East Lansing, Michigan 48824, United States
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Szaefer H, Licznerska B, Baer-Dubowska W. The Aryl Hydrocarbon Receptor and Its Crosstalk: A Chemopreventive Target of Naturally Occurring and Modified Phytochemicals. Molecules 2024; 29:4283. [PMID: 39339278 PMCID: PMC11433792 DOI: 10.3390/molecules29184283] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 07/31/2024] [Revised: 08/30/2024] [Accepted: 09/07/2024] [Indexed: 09/30/2024] Open
Abstract
The aryl hydrocarbon receptor (AhR) is an environmentally sensitive transcription factor (TF) historically associated with carcinogenesis initiation via the activation of numerous carcinogens. Nowadays, the AhR has been attributed to multiple endogenous functions to maintain cellular homeostasis. Moreover, crosstalk, often reciprocal, has been found between the AhR and several other TFs, particularly estrogen receptors (ERs) and nuclear factor erythroid 2-related factor-2 (Nrf2). Adequate modulation of these signaling pathways seems to be an attractive strategy for cancer chemoprevention. Several naturally occurring and synthetically modified AhR or ER ligands and Nrf2 modulators have been described. Sulfur-containing derivatives of glucosinolates, such as indole-3-carbinol (I3C), and stilbene derivatives are particularly interesting in this context. I3C and its condensation product, 3,3'-diindolylmethane (DIM), are classic examples of blocking agents that increase drug-metabolizing enzyme activity through activation of the AhR. Still, they also affect multiple essential signaling pathways in preventing hormone-dependent cancer. Resveratrol is a competitive antagonist of several classic AhR ligands. Its analogs, with ortho-methoxy substituents, exert stronger antiproliferative and proapoptotic activity. In addition, they modulate AhR activity and estrogen metabolism. Their activity seems related to a number of methoxy groups introduced into the stilbene structure. This review summarizes the data on the chemopreventive potential of these classes of phytochemicals, in the context of AhR and its crosstalk modulation.
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Affiliation(s)
- Hanna Szaefer
- Department of Pharmaceutical Biochemistry, Poznan University of Medical Sciences, 3 Rokietnicka Street, 60-806 Poznań, Poland; (B.L.); (W.B.-D.)
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Guo B, Zhu H, Xiao C, Zhang J, Liu X, Fang Y, Wei B, Zhang J, Cao Y, Zhan L. NLRC5 exerts anti-endometriosis effects through inhibiting ERβ-mediated inflammatory response. BMC Med 2024; 22:351. [PMID: 39218863 PMCID: PMC11367751 DOI: 10.1186/s12916-024-03571-0] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 06/11/2024] [Accepted: 08/19/2024] [Indexed: 09/04/2024] Open
Abstract
BACKGROUND Endometriosis is well known as a chronic inflammatory disease. The development of endometriosis is heavily influenced by the estrogen receptor β (ERβ), while NOD-like receptors (NLRs) family CARD domain-containing 5 (NLRC5) exhibits anti-inflammatory properties during endometriosis. However, whether NLRC5-mediated anti-inflammation is involved in the ERβ-mediated endometriosis is still uncertain. This study aimed to assess that relation. METHODS Nine cases of eutopic endometrial tissue and ten cases of ectopic endometrial tissue were collected from patients with endometriosis, and endometrial samples from ten healthy fertile women were analyzed, and the expression levels of ERβ were quantified using immunohistochemistry (IHC). Subsequently, we constructed mouse model of endometriosis by intraperitoneal injection. We detected the expression of ERβ, NLRC5, tumor necrosis factor-alpha (TNF-α), interleukin (IL)-6, and IL-10 and measured the volume of ectopic lesions in mice with endometriosis. In vitro, human endometrial stromal cells (hESCs) were transfected respectively with ERβ-overexpressing and NLRC5-overexpressing plasmids. We then assessed the expression of ERβ and NLRC5 using quantitative real-time PCR (qRT-PCR) and western blot analysis. Furthermore, we measured the concentrations of TNF-α, IL-6, and IL-10 in the cell culture supernatant through enzyme-linked immunosorbent assay (ELISA). Additionally, we evaluated the migration and invasion ability of hESCs using transwell and wound healing assays. RESULTS Inhibition of NLRC5 expression promotes the development of ectopic lesions in mice with endometriosis, upregulates the expression of pro-inflammatory factors TNF-α and IL-6, and downregulates the expression of anti-inflammatory factor IL-10. The high expression of NLRC5 in endometriosis depended on the ERβ overexpression. And ERβ promoted the migration of hESCs partially depend on inflammatory microenvironment. Lastly, NLRC5 overexpression inhibited ERβ-mediated development and inflammatory response of endometriosis. CONCLUSIONS Our results suggest that the innate immune molecule NLRC5-mediated anti-inflammation participates in ERβ-mediated endometriosis development, and partly clarifies the pathological mechanism of endometriosis, expanding our knowledge of the specific molecules related to the inflammatory response involved in endometriosis and potentially providing a new therapeutic target for endometriosis.
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Affiliation(s)
- Bao Guo
- Department of Obstetrics and Gynecology, The Second Affiliated Hospital of Anhui Medical University, No 678 Furong Road, Hefei, 230601, Anhui, China
| | - Haiqing Zhu
- Department of Obstetrics and Gynecology, The Second Affiliated Hospital of Anhui Medical University, No 678 Furong Road, Hefei, 230601, Anhui, China
| | - Chengwei Xiao
- Department of Obstetrics and Gynecology, Bengbu Hospital of Shanghai General Hospital, Bengbu, 233040, Anhui, China
- Department of Obstetrics and Gynecology, The Second Affiliated Hospital of Bengbu Medical University, Bengbu, 233040, Anhui, China
| | - Jing Zhang
- Department of Obstetrics and Gynecology, The Second Affiliated Hospital of Anhui Medical University, No 678 Furong Road, Hefei, 230601, Anhui, China
| | - Xiaojing Liu
- Department of Obstetrics and Gynecology, The Second Affiliated Hospital of Anhui Medical University, No 678 Furong Road, Hefei, 230601, Anhui, China
| | - Yuan Fang
- Department of Obstetrics and Gynecology, The Second Affiliated Hospital of Anhui Medical University, No 678 Furong Road, Hefei, 230601, Anhui, China
| | - Bing Wei
- Department of Obstetrics and Gynecology, The Second Affiliated Hospital of Anhui Medical University, No 678 Furong Road, Hefei, 230601, Anhui, China
| | - Junhui Zhang
- Department of Obstetrics and Gynecology, The Second Affiliated Hospital of Anhui Medical University, No 678 Furong Road, Hefei, 230601, Anhui, China.
| | - Yunxia Cao
- Department of Obstetrics and Gynecology, The First Affiliated Hospital of Anhui Medical University, No 218 Jixi Road, Hefei, 230022, Anhui, China.
| | - Lei Zhan
- Department of Obstetrics and Gynecology, The First Affiliated Hospital of Anhui Medical University, No 218 Jixi Road, Hefei, 230022, Anhui, China.
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Singla P, Broughton T, Sullivan MV, Garg S, Berlinguer‐Palmini R, Gupta P, Smith KJ, Gardner B, Canfarotta F, Turner NW, Velliou E, Amarnath S, Peeters M. Double Imprinted Nanoparticles for Sequential Membrane-to-Nuclear Drug Delivery. ADVANCED SCIENCE (WEINHEIM, BADEN-WURTTEMBERG, GERMANY) 2024; 11:e2309976. [PMID: 38973256 PMCID: PMC11423068 DOI: 10.1002/advs.202309976] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Subscribe] [Scholar Register] [Received: 02/15/2024] [Revised: 06/14/2024] [Indexed: 07/09/2024]
Abstract
Efficient and site-specific delivery of therapeutics drugs remains a critical challenge in cancer treatment. Traditional drug nanocarriers such as antibody-drug conjugates are not generally accessible due to their high cost and can lead to serious side effects including life-threatening allergic reactions. Here, these problems are overcome via the engineering of supramolecular agents that are manufactured with an innovative double imprinting approach. The developed molecularly imprinted nanoparticles (nanoMIPs) are targeted toward a linear epitope of estrogen receptor alfa (ERα) and loaded with the chemotherapeutic drug doxorubicin. These nanoMIPs are cost-effective and rival the affinity of commercial antibodies for ERα. Upon specific binding of the materials to ERα, which is overexpressed in most breast cancers (BCs), nuclear drug delivery is achieved via receptor-mediated endocytosis. Consequentially, significantly enhanced cytotoxicity is elicited in BC cell lines overexpressing ERα, paving the way for precision treatment of BC. Proof-of-concept for the clinical use of the nanoMIPs is provided by evaluating their drug efficacy in sophisticated three-dimensional (3D) cancer models, which capture the complexity of the tumor microenvironment in vivo without requiring animal models. Thus, these findings highlight the potential of nanoMIPs as a promising class of novel drug compounds for use in cancer treatment.
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Affiliation(s)
- Pankaj Singla
- Department of Chemical EngineeringThe University of ManchesterEngineering building A, East Booth Street, Oxford RoadManchesterM13 9PLUK
- School of EngineeringNewcastle UniversityMerz Court, Claremont RoadNewcastle Upon TyneNE1 7RUUK
- Center for Cancer Research, NU Cancer, Faculty of Medical SciencesNewcastle UniversityNewcastle Upon TyneNE2 4HHUK
| | - Thomas Broughton
- Center for Cancer Research, NU Cancer, Faculty of Medical SciencesNewcastle UniversityNewcastle Upon TyneNE2 4HHUK
- Immune Regulation Laboratory, NU Biosciences, Faculty of Medical SciencesNewcastle UniversityNewcastle Upon TyneNE2 4HHUK
- NIHR, Biomedical Research CentreNewcastle UniversityNewcastle Upon TyneNE2 4HHUK
| | - Mark V. Sullivan
- Department of ChemistryUniversity of SheffieldDainton BuildingSheffieldS3 7HFUK
| | - Saweta Garg
- Department of Chemical EngineeringThe University of ManchesterEngineering building A, East Booth Street, Oxford RoadManchesterM13 9PLUK
- School of EngineeringNewcastle UniversityMerz Court, Claremont RoadNewcastle Upon TyneNE1 7RUUK
- Center for Cancer Research, NU Cancer, Faculty of Medical SciencesNewcastle UniversityNewcastle Upon TyneNE2 4HHUK
| | - Rolando Berlinguer‐Palmini
- The Bio‐Imaging Unit, Medical SchoolNewcastle UniversityWilliam Leech BuildingNewcastle Upon TyneNE2 4HHUK
| | - Priyanka Gupta
- Centre for 3D models of Health and Disease, Division of Surgery and Interventional ScienceUniversity College LondonLondonW1W 7TYUK
| | - Katie J Smith
- Center for Cancer Research, NU Cancer, Faculty of Medical SciencesNewcastle UniversityNewcastle Upon TyneNE2 4HHUK
- Immune Regulation Laboratory, NU Biosciences, Faculty of Medical SciencesNewcastle UniversityNewcastle Upon TyneNE2 4HHUK
| | - Ben Gardner
- Center for Cancer Research, NU Cancer, Faculty of Medical SciencesNewcastle UniversityNewcastle Upon TyneNE2 4HHUK
- Immune Regulation Laboratory, NU Biosciences, Faculty of Medical SciencesNewcastle UniversityNewcastle Upon TyneNE2 4HHUK
| | | | - Nicholas W. Turner
- Department of ChemistryUniversity of SheffieldDainton BuildingSheffieldS3 7HFUK
| | - Eirini Velliou
- Centre for 3D models of Health and Disease, Division of Surgery and Interventional ScienceUniversity College LondonLondonW1W 7TYUK
| | - Shoba Amarnath
- Center for Cancer Research, NU Cancer, Faculty of Medical SciencesNewcastle UniversityNewcastle Upon TyneNE2 4HHUK
- Immune Regulation Laboratory, NU Biosciences, Faculty of Medical SciencesNewcastle UniversityNewcastle Upon TyneNE2 4HHUK
- NIHR, Biomedical Research CentreNewcastle UniversityNewcastle Upon TyneNE2 4HHUK
| | - Marloes Peeters
- Department of Chemical EngineeringThe University of ManchesterEngineering building A, East Booth Street, Oxford RoadManchesterM13 9PLUK
- School of EngineeringNewcastle UniversityMerz Court, Claremont RoadNewcastle Upon TyneNE1 7RUUK
- Center for Cancer Research, NU Cancer, Faculty of Medical SciencesNewcastle UniversityNewcastle Upon TyneNE2 4HHUK
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Zhuang T, Zhang S, Liu D, Li Z, Li X, Li J, Yang P, Zhang C, Cui J, Fu M, Shen F, Yuan L, Zhang Z, Su P, Zhu J, Yang H. USP36 promotes tumorigenesis and tamoxifen resistance in breast cancer by deubiquitinating and stabilizing ERα. J Exp Clin Cancer Res 2024; 43:249. [PMID: 39215346 PMCID: PMC11365244 DOI: 10.1186/s13046-024-03160-2] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/10/2024] [Accepted: 08/09/2024] [Indexed: 09/04/2024] Open
Abstract
BACKGROUND Breast cancer is the most prevalent cancer in women globally. Over-activated estrogen receptor (ER) α signaling is considered the main factor in luminal breast cancers, which can be effectively managed with selective estrogen receptor modulators (SERMs) like tamoxifen. However, approximately 30-40% of ER + breast cancer cases are recurrent after tamoxifen therapy. This implies that the treatment of breast cancer is still hindered by resistance to tamoxifen. Recent studies have suggested that post-translational modifications of ERα play a significant role in endocrine resistance. The stability of both ERα protein and its transcriptome is regulated by a balance between E3 ubiquitin ligases and deubiquitinases. According to the current knowledge, approximately 100 deubiquitinases are encoded in the human genome, but it remains unclear which deubiquitinases play a critical role in estrogen signaling and endocrine resistance. Thus, decoding the key deubiquitinases that significantly impact estrogen signaling, including the control of ERα expression and stability, is critical for the improvement of breast cancer therapeutics. METHODS We used several ER positive breast cancer cell lines, DUB siRNA library screening, xenograft models, endocrine-resistant (ERα-Y537S) model and performed immunoblotting, real time PCR, RNA sequencing, immunofluorescence, and luciferase activity assay to investigate the function of USP36 in breast cancer progression and tamoxifen resistance. RESULTS In this study, we identify Ubiquitin-specific peptidase 36 (USP36) as a key deubiquitinase involved in ERα signaling and the advancement of breast cancer by deubiquitinases siRNA library screening. In vitro and in vivo studies showed that USP36, but not its catalytically inactive mutant (C131A), could promote breast cancer progression through ERα signaling. Conversely, silencing USP36 inhibited tumorigenesis. In models resistant to endocrine therapy, silencing USP36 destabilized the resistant form of ERα (Y537S) and restored sensitivity to tamoxifen. Molecular studies indicated that USP36 inhibited K48-linked polyubiquitination of ERα and enhanced the ERα transcriptome. It is interesting to note that our results suggest USP36 as a novel biomarker for treatment of breast cancer. CONCLUSION Our study revealed the possibility that inhibiting USP36 combined with tamoxifen could provide a potential therapy for breast cancer.
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Affiliation(s)
- Ting Zhuang
- Xinxiang Key Laboratory of Tumor Migration and Invasion Precision Medicine, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
- Henan Key Laboratory of Immunology and Targeted Therapy, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
| | - Shuqing Zhang
- Xinxiang Key Laboratory of Tumor Migration and Invasion Precision Medicine, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
- Henan Key Laboratory of Immunology and Targeted Therapy, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
| | - Dongyi Liu
- Department of Anaesthesiology, The Second Hospital, Cheeloo College of Medicine, Shandong University, Jinan, 250033, Shandong Province, P.R. China
- Department of General Surgery, The Second Hospital, Cheeloo College of Medicine, Shandong University, Jinan, 250033, Shandong Province, P.R. China
| | - Zhongbo Li
- Xinxiang Key Laboratory of Tumor Migration and Invasion Precision Medicine, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
- Henan Key Laboratory of Immunology and Targeted Therapy, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
| | - Xin Li
- Xinxiang Key Laboratory of Tumor Migration and Invasion Precision Medicine, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
- Henan Key Laboratory of Immunology and Targeted Therapy, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
| | - Jiaoyan Li
- Xinxiang Key Laboratory of Tumor Migration and Invasion Precision Medicine, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
- Henan Key Laboratory of Immunology and Targeted Therapy, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
| | - Penghe Yang
- Xinxiang Key Laboratory of Tumor Migration and Invasion Precision Medicine, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
- Henan Key Laboratory of Immunology and Targeted Therapy, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
| | - Chenmiao Zhang
- Xinxiang Key Laboratory of Tumor Migration and Invasion Precision Medicine, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
- Henan Key Laboratory of Immunology and Targeted Therapy, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
| | - Jiayao Cui
- Xinxiang Key Laboratory of Tumor Migration and Invasion Precision Medicine, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
- Henan Key Laboratory of Immunology and Targeted Therapy, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
| | - Mingxi Fu
- Xinxiang Key Laboratory of Tumor Migration and Invasion Precision Medicine, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
- Henan Key Laboratory of Immunology and Targeted Therapy, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
| | - Fangyu Shen
- Xinxiang Key Laboratory of Tumor Migration and Invasion Precision Medicine, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
- Henan Key Laboratory of Immunology and Targeted Therapy, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
| | - Lei Yuan
- School of International Education, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China
| | - Zhao Zhang
- The Fifth Clinical Medical College of Henan University of Chinese Medicine (Zhengzhou People's Hospital), Zhengzhou, 450003, Henan Province, P.R. China
| | - Peng Su
- Department of Pathology, Qilu Hospital, Cheeloo College of Medicine, Shandong University, Jinan, 250033, China.
| | - Jian Zhu
- Department of General Surgery, The Second Hospital, Cheeloo College of Medicine, Shandong University, Jinan, 250033, Shandong Province, P.R. China.
- Department of General Surgery, Shengjing Hospital of China Medical University, Shenyang, Liaoning Province, 110000, P.R. China.
| | - Huijie Yang
- Xinxiang Key Laboratory of Tumor Migration and Invasion Precision Medicine, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China.
- Henan Key Laboratory of Immunology and Targeted Therapy, School of Medical Technology, Xinxiang Medical University, Xinxiang, 453003, Henan Province, P.R. China.
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