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Hisaoka T, Komori T, Fujimoto K, Kitamura T, Morikawa Y. Comprehensive expression pattern of kin of irregular chiasm-like 3 in the adult mouse brain. Biochem Biophys Res Commun 2021; 563:66-72. [PMID: 34062388 DOI: 10.1016/j.bbrc.2021.05.063] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Abstract] [Key Words] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/16/2021] [Accepted: 05/18/2021] [Indexed: 11/16/2022]
Abstract
Kin of irregular chiasm-like 3 (Kirrel3), a member of the immunoglobulin superfamily, is expressed in the central nervous system during development and in adulthood. It has been reported that Kirrel3 is involved in the axonal fasciculation in the olfactory bulb, the neuronal migration in the pontine nucleus, and the synapse formation in the hippocampal neurons in mice. Although KIRREL3 mutations have been implicated in autism spectrum disorder and intellectual disability in humans, the comprehensive expression pattern of Kirrel3 in the adult brain is not fully understood. To better visualize Kirrel3 expression pattern and to gain insight into the role of Kirrel3 in the brain, we investigated the expression of Kirrel3 in the adult brain of Kirrel3-heterozygous (Kirrel3+/-) mice, in which Kirrel3-expressing cells could be identified by the expression of β-galactosidase (β-gal) in the nucleus of cells. The strong expression of β-gal was observed in the hippocampus, cerebral cortex, olfactory bulb, amygdala, thalamus, and cerebellum. In the hippocampus, β-gal was detected in the dentate gyrus and in the ventral parts of CA1 and CA3, which are known to be involved in the social recognition memory. Within the cerebral cortex, many cells with β-gal expression were observed in the olfactory area and auditory area. In the striatum, neurons with β-gal expression were mainly observed in the ventral striatum. Expression of β-gal was observed in all layers in the cerebellum and olfactory bulb, except for the olfactory nerve layer. Double-immunofluorescence staining of β-galactosidase with neuronal markers revealed that β-gal expression was exclusively detected in neurons. These results suggest that Kirrel3 may be involved in the maintenance of neuronal networks, such as the maintenance of synaptic connectivity and plasticity in the motor, sensory, and cognitive circuits of adult brain.
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Affiliation(s)
- Tomoko Hisaoka
- Department of Anatomy and Neurobiology, Wakayama Medical University, 811-1 Kimiidera, Wakayama, 641-8509, Japan
| | - Tadasuke Komori
- Department of Anatomy and Neurobiology, Wakayama Medical University, 811-1 Kimiidera, Wakayama, 641-8509, Japan
| | - Kohta Fujimoto
- Department of Developmental Genetics, Institute of Advanced Medicine, Wakayama Medical University, 811-1 Kimiidera, Wakayama, 641-8509, Japan
| | - Toshio Kitamura
- Division of Cellular Therapy, Advanced Clinical Research Center, The Institute of Medical Science, The University of Tokyo, 4-6-1 Shirokanedai, Minato-ku, Tokyo, 108-8639, Japan
| | - Yoshihiro Morikawa
- Department of Anatomy and Neurobiology, Wakayama Medical University, 811-1 Kimiidera, Wakayama, 641-8509, Japan.
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Wang Z, Ashley DW, Kong L, Kang J, Nakayama DK, Dale PS. Nuclear Factor-κB is Activated in Filter-Implanted Vena Cava. Cardiovasc Intervent Radiol 2018; 42:601-607. [PMID: 30535787 DOI: 10.1007/s00270-018-2138-2] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.1] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 07/09/2018] [Accepted: 11/29/2018] [Indexed: 11/29/2022]
Abstract
BACKGROUND Implantation of a retrievable vena cava filter (VCF) is an effective method for preventing pulmonary embolism. Retrieval of filters, however, may be difficult due to intimal hyperplasia and inflammation in the cava wall. The transcription factor nuclear factor-kappaB (NF-κB) plays an important role in regulation of numerous genes participating in the inflammatory and proliferative responses of cells. The present study was to determine whether VCF implantation resulted in activation of NF-κB in the venous neointima. METHODS Filters were placed in vena cava (VC) in four swine for 30 days and then removed. Intimal specimens adhering to the filter struts were analyzed with reference to normal VC tissues. Immunohistochemical analyses were used to assess the NF-κB subunits p65 and p50 and the phosphorylated inhibitor of κB-α (phosphor-IκB-α) in the tissues. NF-κB DNA-binding activity was measured with enzyme-linked immunosorbent assay. RESULTS As compared to normal VC tissues, the intimal tissues contained higher percentages of cell nucleus-located p65 and p50, and NF-κB DNA-binding activity. Elevated immunoreactivities of p65, p50 and phosphor-IκB-α were also present in the intima. CONCLUSION The present study demonstrates for the first time that VCF implantation caused NF-κB activation in neointima. We further demonstrate the activation is at least partly due to phosphorylation of IκB-α. Our data suggest that NF-κB activation would significantly contribute to development of intimal hyperplasia and inflammation in filter-inserted vena cava walls. NF-κB might be a therapeutic target for inhibiting filter-induced neointima and improving filter retrieval.
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Affiliation(s)
- Zhongbiao Wang
- Department of Surgery, Navicent Health Physician Group, Mercer University School of Medicine and The Medical Center Navicent Health, 1550 College Street, Macon, GA, 31207, USA. .,Division of Trauma and Critical Care, Navicent Health Physician Group, Mercer University School of Medicine and The Medical Center Navicent Health, 1550 College Street, Macon, GA, 31207, USA. .,Department of Medical Sciences, Mercer University School of Medicine, 1550 College Street, Macon, GA, 31207, USA.
| | - Dennis W Ashley
- Department of Surgery, Navicent Health Physician Group, Mercer University School of Medicine and The Medical Center Navicent Health, 1550 College Street, Macon, GA, 31207, USA.,Division of Trauma and Critical Care, Navicent Health Physician Group, Mercer University School of Medicine and The Medical Center Navicent Health, 1550 College Street, Macon, GA, 31207, USA
| | - Lingwei Kong
- Department of Surgery, Navicent Health Physician Group, Mercer University School of Medicine and The Medical Center Navicent Health, 1550 College Street, Macon, GA, 31207, USA
| | - Jing Kang
- Department of Medical Sciences, Mercer University School of Medicine, 1550 College Street, Macon, GA, 31207, USA
| | - Don K Nakayama
- Department of Surgery, Navicent Health Physician Group, Mercer University School of Medicine and The Medical Center Navicent Health, 1550 College Street, Macon, GA, 31207, USA
| | - Paul S Dale
- Department of Surgery, Navicent Health Physician Group, Mercer University School of Medicine and The Medical Center Navicent Health, 1550 College Street, Macon, GA, 31207, USA.,Division of Surgical Oncology, Navicent Health Physician Group, Mercer University School of Medicine and The Medical Center Navicent Health, Macon, GA, 31207, USA
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Brown KL, Freeman JH. Retention of eyeblink conditioning in periweanling and adult rats. Dev Psychobiol 2016; 58:1055-1065. [PMID: 27279383 DOI: 10.1002/dev.21439] [Citation(s) in RCA: 3] [Impact Index Per Article: 0.3] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/05/2016] [Accepted: 05/26/2016] [Indexed: 11/06/2022]
Abstract
Eyeblink conditioning is a well-established model for studying the developmental neurobiology of associative learning and memory, though nothing is known regarding developmental differences in retention between periweanling and adult rats. The present study examined retention of eyeblink conditioning in periweanling (postnatal day 24 at the start of training) and adult rats 1, 7, or 28 days after acquisition. Retention was assessed by (1) a conditional stimulus (CS)-alone test session followed by (2) CS-unconditional stimulus (US) reacquisition tests. Conditional response (CR) levels at acquisition were comparable in most respects between ages, and robust CR levels were present at the start of retention tests for both ages in the 1 day group, with CR percentages at block 1 of reacquisition higher in periweanlings relative to adults. At the 7 day retention test there was a trend toward significance for higher CR percentages at the CS-alone test in adults relative to periweanlings, though there were no age differences at reacquisition testing. When testing occurred 28 days after acquisition, however, periweanlings showed fewer CRs relative to adults during reacquisition despite low CR levels in both ages throughout the CS-alone test. Furthermore, periweanlings in the 28 day group required more trials at reacquisition than all other groups to exceed CR levels from their first acquisition session. These findings are consistent with rapid forgetting in the young commonly referred to as "infantile amnesia." The well-characterized eyeblink preparation may be useful for future studies investigating neural mechanisms responsible for rapid forgetting in developing animals.
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Affiliation(s)
- Kevin L Brown
- Department of Psychological and Brain Sciences, University of Iowa, Iowa City, Iowa
| | - John H Freeman
- Department of Psychological and Brain Sciences, University of Iowa, Iowa City, Iowa
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