Jacquetta Trasler

Affiliations: 
Human Genetics McGill University, Montreal, QC, Canada 
Area:
Genetics
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"Jacquetta Trasler"

Children

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Carmen Mertineit grad student 2000 McGill
Donovan Chan grad student 2012 McGill
Kirsten M. Niles grad student 2012 McGill
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Publications

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Karahan G, Chan D, Shirane K, et al. (2021) Paternal MTHFR deficiency leads to hypomethylation of young retrotransposons and reproductive decline across two successive generations. Development (Cambridge, England)
Ly L, Chan D, Landry M, et al. (2020) Impact of mothers' early life exposure to low or high folate on progeny outcome and DNA methylation patterns. Environmental Epigenetics. 6: dvaa018
Maruvada P, Stover PJ, Mason JB, et al. (2020) Knowledge gaps in understanding the metabolic and clinical effects of excess folates/folic acid: a summary, and perspectives, from an NIH workshop. The American Journal of Clinical Nutrition
Robaire B, Eddy M, Goldberg E, et al. (2020) Celebrating the Silver Anniversary of the North American Testis Workshop. Andrology
Herst PM, Dalvai M, Lessard M, et al. (2019) Folic acid supplementation reduces multigenerational sperm miRNA perturbation induced by environmental contaminant exposure. Environmental Epigenetics. 5: dvz024
Lessard M, Herst PM, Charest PL, et al. (2019) Prenatal Exposure to Environmentally-Relevant Contaminants Perturbs Male Reproductive Parameters Across Multiple Generations that are Partially Protected by Folic Acid Supplementation. Scientific Reports. 9: 13829
Navarro P, Dalvai M, Charest PL, et al. (2019) Maternal folic acid supplementation does not counteract the deleterious impact of prenatal exposure to environmental pollutants on lipid homeostasis in male rat descendants. Journal of Developmental Origins of Health and Disease. 1-11
Chan D, Shao X, Dumargne MC, et al. (2019) Customized MethylC-Capture Sequencing to Evaluate Variation in the Human Sperm DNA Methylome Representative of Altered Folate Metabolism. Environmental Health Perspectives. 127: 87002
Rahimi S, Martel J, Karahan G, et al. (2019) Moderate maternal folic acid supplementation ameliorates adverse embryonic and epigenetic outcomes associated with assisted reproduction in a mouse model. Human Reproduction (Oxford, England)
Aarabi M, Christensen KE, Chan D, et al. (2018) Testicular MTHFR deficiency may explain sperm DNA hypomethylation associated with high dose folic acid supplementation. Human Molecular Genetics
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