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Article Publish Status: FREE
Abstract Title:

Maternal exposure to bisphenol A induces fetal growth restriction via upregulating the expression of estrogen receptors.

Abstract Source:

Chemosphere. 2021 Sep 14 ;287(Pt 3):132244. Epub 2021 Sep 14. PMID: 34537452

Abstract Author(s):

Yuming Cao, Zhenlie Chen, Ming Zhang, Lei Shi, Songling Qin, Dan Lv, Danyang Li, Ling Ma, Yuanzhen Zhang

Article Affiliation:

Yuming Cao

Abstract:

Bisphenol A (BPA) accumulation in the placenta leads to fetal growth restriction (FGR). Here we aimed to explore the effect and the underlying mechanism of BPA exposure on fetal development. ELISA was performed to measure estrogen levels in human placenta and BeWo cells. qRT-PCR and Western blotting were conducted to determine the expression of estrogen receptors (ERs), breast cancer resistance protein (BCRP), the key enzymes for ER synthesis, and DNA methyltransferases (DNMTs). Bisulfite-sequencing PCR analysis was performed to measure CpG methylation in ER genes. Flow cytometry was used to examine cell apoptosis. We found that human FGR placentae had significantly increased BPA and estrogen levels and decreased BCRP levels compared with healthy placentae. BPA downregulated BCRP expression via ERs, and BCRP silencing promoted ER expression in BeWo cells. Compared with vehicle treatment, BPA treatment significantly enhanced the expression of key enzymes for estrogen synthesis and ERs in BeWo cells. BPA treatment inhibited CpG methylation in ER genes, along with downregulated DNMT1 expression and upregulated DNMT3a and DNMT3b expression. BPA treatment significantly promoted BeWo cell apoptosis compared with vehicle treatment. Importantly, ER inhibitor ICI-182780 significantly reversed all the BPA-induced effects on BeWo cells. In conclusion, BPA promotes estrogen production and cell apoptosis in BeWo cells via upregulating ER expression, leading to FGR.

Study Type : Human In Vitro

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