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PMID: 33865946 Published · ppublish English

Epigenetic effects of insecticides on early differentiation of mouse embryonic stem cells.

Wang W, Ito T, Otsuka S, Nansai H, Abe K, Nakao Y, Ohgane J, Yoneda M, Sone H

Abstract

Increasing evidence indicates that many insecticides produce significant epigenetic changes during embryogenesis, leading to developmental toxicities. However, the effects of insecticides on DNA methylation status during early development have not been well studied. We developed a novel nuclear phenotypic approach using mouse embryonic stem cells harboring enhanced green fluorescent protein fused with methyl CpG-binding protein to evaluate global DNA methylation changes via high-content imaging analysis. Exposure to imidacloprid, carbaryl, and o,p'-DDT increased the fluorescent intensity of granules in the nuclei, indicating global DNA methylating effects. However, DNA methylation profiling in cell-cycle-related genes, such as Cdkn2a, Dapk1, Cdh1, Mlh1, Timp3, and Rarb, decreased in imidacloprid treatments, suggesting the potential influence of DNA methylation patterns on cell differentiation. We developed a rapid method for evaluating global DNA methylation and used this approach to show that insecticides pose risks of developmental toxicity through DNA methylation.

Keywords
DNA methylation Developmental toxicity Mouse embryonic stem cells Pesticides
Article Info
Journal
Toxicology in vitro : an international journal published in association with BIBRA
Abbr.
Toxicol In Vitro
ISSN
1879-3177
Published
2021-09-00
Language
English
Country/Region
England
NLM ID
8712158
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