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Godschalk RWL, Yauk CL, van Benthem J, Douglas GR, Marchetti F. In utero Exposure to Genotoxicants Leading to Genetic Mosaicism: An Overlooked Window of Susceptibility in Genetic Toxicology Testing? ENVIRONMENTAL AND MOLECULAR MUTAGENESIS 2020; 61:55-65. [PMID: 31743493 PMCID: PMC6973016 DOI: 10.1002/em.22347] [Citation(s) in RCA: 13] [Impact Index Per Article: 2.6] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Subscribe] [Scholar Register] [Received: 09/25/2019] [Revised: 11/14/2019] [Accepted: 11/17/2019] [Indexed: 05/08/2023]
Abstract
In utero development represents a sensitive window for the induction of mutations. These mutations may subsequently expand clonally to populate entire organs or anatomical structures. Although not all adverse mutations will affect tissue structure or function, there is growing evidence that clonally expanded genetic mosaics contribute to various monogenic and complex diseases, including cancer. We posit that genetic mosaicism is an underestimated potential health problem that is not fully addressed in the current regulatory genotoxicity testing paradigm. Genotoxicity testing focuses exclusively on adult exposures and thus may not capture the complexity of genetic mosaicisms that contribute to human disease. Numerous studies have shown that conversion of genetic damage into mutations during early developmental exposures can result in much higher mutation burdens than equivalent exposures in adults in certain tissues. Therefore, we assert that analysis of genetic effects caused by in utero exposures should be considered in the current regulatory testing paradigm, which is possible by harmonization with current reproductive/developmental toxicology testing strategies. This is particularly important given the recent proposed paradigm change from simple hazard identification to quantitative mutagenicity assessment. Recent developments in sequencing technologies offer practical tools to detect mutations in any tissue or species. In addition to mutation frequency and spectrum, these technologies offer the opportunity to characterize the extent of genetic mosaicism following exposure to mutagens. Such integration of new methods with existing toxicology guideline studies offers the genetic toxicology community a way to modernize their testing paradigm and to improve risk assessment for vulnerable populations. Environ. Mol. Mutagen. 61:55-65, 2020. © 2019 The Authors. Environmental and Molecular Mutagenesis published by Wiley Periodicals, Inc. on behalf of Environmental Mutagen Society.
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Affiliation(s)
- Roger W. L. Godschalk
- Department of Pharmacology and Toxicology, School for Nutrition and Translational Research in Metabolism (NUTRIM)Maastricht UniversityMaastrichtThe Netherlands
| | - Carole L. Yauk
- Mechanistic Studies DivisionEnvironmental Health Science and Research Bureau, Health CanadaOttawaK1A 0K9OntarioCanada
| | - Jan van Benthem
- Center for Health ProtectionNational Institute for Public Health and the Environment (RIVM)BilthovenThe Netherlands
| | - George R. Douglas
- Mechanistic Studies DivisionEnvironmental Health Science and Research Bureau, Health CanadaOttawaK1A 0K9OntarioCanada
| | - Francesco Marchetti
- Mechanistic Studies DivisionEnvironmental Health Science and Research Bureau, Health CanadaOttawaK1A 0K9OntarioCanada
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Wickliffe JK, Dertinger SD, Torous DK, Avlasevich SL, Simon-Friedt BR, Wilson MJ. Diet-induced obesity increases the frequency of Pig-a mutant erythrocytes in male C57BL/6J mice. ENVIRONMENTAL AND MOLECULAR MUTAGENESIS 2016; 57:668-677. [PMID: 27739633 PMCID: PMC5118159 DOI: 10.1002/em.22058] [Citation(s) in RCA: 9] [Impact Index Per Article: 1.0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Subscribe] [Scholar Register] [Received: 05/27/2016] [Revised: 09/12/2016] [Accepted: 09/14/2016] [Indexed: 05/10/2023]
Abstract
Obesity increases the risk of a number of chronic diseases in humans including several cancers. Biological mechanisms responsible for such increased risks are not well understood at present. Increases in systemic inflammation and oxidative stress, endogenous production of mutagenic metabolites, altered signaling in proliferative pathways, and increased sensitivity to exogenous mutagens and carcinogens are some of the potential contributing factors. We hypothesize that obesity creates an endogenously mutagenic environment in addition to increasing the sensitivity to environmental mutagens. To test this hypothesis, we examined two in vivo genotoxicity endpoints. Pig-a mutant frequencies and micronucleus frequencies were determined in blood cells in two independent experiments in 30-week old male mice reared on either a high-fat diet (60% calories from fat) that exhibit an obese phenotype or a normal-fat diet (10% calories from fat) that do not exhibit an obese phenotype. Mice were assayed again at 52 weeks of age in one of the experiments. N-ethyl-N-nitrosourea (ENU) was used as a positive mutation control in one experiment. ENU induced a robust Pig-a mutant and micronucleus response in both phenotypes. Obese, otherwise untreated mice, did not differ from non-obese mice with respect to Pig-a mutant frequencies in reticulocytes or micronucleus frequencies. However, such mice, had significantly higher and sustained Pig-a mutant frequencies (increased 2.5-3.7-fold, p < 0.02) in erythrocytes as compared to non-obese mice (based on measurements collected at 30 weeks or 30 and 52 weeks of age). This suggests that obesity, in the absence of exposure to an exogenous mutagen, is itself mutagenic. Environ. Mol. Mutagen. 57:668-677, 2016. © 2016 Wiley Periodicals, Inc.
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Affiliation(s)
- Jeffrey K. Wickliffe
- Department of Global Environmental Health Sciences, School of Public Health and Tropical Medicine, Tulane University, New Orleans, LA 70112 USA
| | | | | | | | - Bridget R. Simon-Friedt
- Department of Global Environmental Health Sciences, School of Public Health and Tropical Medicine, Tulane University, New Orleans, LA 70112 USA
| | - Mark J. Wilson
- Department of Global Environmental Health Sciences, School of Public Health and Tropical Medicine, Tulane University, New Orleans, LA 70112 USA
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Pu J, Deng Y, Tan X, Chen G, Zhu C, Qi N, Wen H, Guo J, Wang X, Qiu Y, Liang J, Fu X, Hu Y, Song J, Geng X, Wang C, Zhang L, Huang Z, Li B, Wang X. The in vivo Pig-a gene mutation assay is applied to study the genotoxicity of procarbazine hydrochloride in Sprague-Dawley rats. ACTA ACUST UNITED AC 2016. [DOI: 10.2131/fts.3.167] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.2] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/02/2022]
Affiliation(s)
- Jiang Pu
- National Centre for Safety Evaluation of Drugs, National Institutes for Food and Drug Control, China
- Sun Yat-sen University, China
| | - Yuanyuan Deng
- National Centre for Safety Evaluation of Drugs, National Institutes for Food and Drug Control, China
- National Centre for Safety Evaluation of Drugs, China
| | - Xiaoyan Tan
- National Centre for Safety Evaluation of Drugs, National Institutes for Food and Drug Control, China
- Sun Yat-sen University, China
| | - Gaofeng Chen
- National Centre for Safety Evaluation of Drugs, National Institutes for Food and Drug Control, China
- Sun Yat-sen University, China
| | - Cong Zhu
- National Centre for Safety Evaluation of Drugs, National Institutes for Food and Drug Control, China
- Sun Yat-sen University, China
| | - Naisong Qi
- National Centre for Safety Evaluation of Drugs, National Institutes for Food and Drug Control, China
| | - Hairuo Wen
- National Centre for Safety Evaluation of Drugs, National Institutes for Food and Drug Control, China
| | - Jun Guo
- National Centre for Safety Evaluation of Drugs, National Institutes for Food and Drug Control, China
| | - Xin Wang
- National Centre for Safety Evaluation of Drugs, National Institutes for Food and Drug Control, China
| | | | | | | | - Yanping Hu
- National Centre for Safety Evaluation of Drugs, National Institutes for Food and Drug Control, China
| | - Jie Song
- National Centre for Safety Evaluation of Drugs, National Institutes for Food and Drug Control, China
| | - Xingchao Geng
- National Centre for Safety Evaluation of Drugs, National Institutes for Food and Drug Control, China
| | - Chao Wang
- National Centre for Safety Evaluation of Drugs, National Institutes for Food and Drug Control, China
| | - Lin Zhang
- National Centre for Safety Evaluation of Drugs, National Institutes for Food and Drug Control, China
| | | | - Bo Li
- National Centre for Safety Evaluation of Drugs, National Institutes for Food and Drug Control, China
| | - Xue Wang
- National Centre for Safety Evaluation of Drugs, National Institutes for Food and Drug Control, China
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Gollapudi BB, Lynch AM, Heflich RH, Dertinger SD, Dobrovolsky VN, Froetschl R, Horibata K, Kenyon MO, Kimoto T, Lovell DP, Stankowski LF, White PA, Witt KL, Tanir JY. The in vivo Pig-a assay: A report of the International Workshop On Genotoxicity Testing (IWGT) Workgroup. MUTATION RESEARCH-GENETIC TOXICOLOGY AND ENVIRONMENTAL MUTAGENESIS 2015; 783:23-35. [DOI: 10.1016/j.mrgentox.2014.09.007] [Citation(s) in RCA: 126] [Impact Index Per Article: 12.6] [Reference Citation Analysis] [Track Full Text] [Subscribe] [Scholar Register] [Received: 09/13/2014] [Accepted: 09/15/2014] [Indexed: 12/01/2022]
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Johnson GE, Slob W, Doak SH, Fellows MD, Gollapudi BB, Heflich RH, Rees BJ, Soeteman-Hernández LG, Verma JR, Wills JW, Jenkins GJS, White PA. New approaches to advance the use of genetic toxicology analyses for human health risk assessment. Toxicol Res (Camb) 2015. [DOI: 10.1039/c4tx00118d] [Citation(s) in RCA: 24] [Impact Index Per Article: 2.4] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/21/2022] Open
Abstract
Genetic toxicology testing has a crucial role in the safety assessment of substances of societal value by reducing human exposure to potential somatic and germ cell mutagens.
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Affiliation(s)
- George E. Johnson
- Institute of Life Science
- College of Medicine
- Swansea University
- Swansea
- UK
| | - Wout Slob
- Institute of Life Science
- College of Medicine
- Swansea University
- Swansea
- UK
| | - Shareen H. Doak
- Institute of Life Science
- College of Medicine
- Swansea University
- Swansea
- UK
| | | | | | - Robert H. Heflich
- National Centre for Toxicological Research
- U.S. Food and Drug Administration
- Jefferson
- USA
| | - Ben J. Rees
- Institute of Life Science
- College of Medicine
- Swansea University
- Swansea
- UK
| | - Lya G. Soeteman-Hernández
- Center for Health Protection
- National Institute for Public Health and the Environment (RIVM)
- Bilthoven
- Netherlands
| | - Jatin R. Verma
- Institute of Life Science
- College of Medicine
- Swansea University
- Swansea
- UK
| | - John W. Wills
- Institute of Life Science
- College of Medicine
- Swansea University
- Swansea
- UK
| | | | - Paul A. White
- Environmental Health Sciences and Research Bureau
- Healthy Environments and Consumer Safety Branch
- Health Canada
- Ottawa
- Canada
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