Molecular mechanism of endocrine-disruptive effects induced by Bisphenol A:The role of transmembrane G-protein estrogen receptor 1 and integrin αvβ3

Molecular mechanism of endocrine-disruptive effects induced by Bisphenol A:The role of transmembrane G-protein estrogen receptor 1 and integrin αvβ3

论文摘要

Bisphenol A(BPA) is one of the highest volume industrial products worldwide and has been widely used to make various products as the intermediates of polycarbonate plastics and epoxy resins.Inevitably, general population has been widely exposed to BPA due to extensive use of BPAcontaining products. BPA has similar chemical structure with the natural estrogen and has been shown to induce a variety of estrogen-like endocrine effects on organism in vivo or in vitro. High doses of BPA tend to act as antagonist of estrogen receptors(ERs) by directly regulating the genomic transcription. However, BPA at environmentally relevant low-dose always disrupt the biological function via a non-genomic manner mediated by membrane receptors, rather than ERs. Although some studies had investigated the non-genomic effects of low-dose BPA, the exact molecular mechanism still remains unclear. Recently, we found that membrane G protein-coupled estrogen receptor 1 and integrin αvβ3 and its relative signal pathways participate in the induction of male germ cell proliferation and thyroid transcription disruption by the low-dose BPA. A profound understanding for the mechanism of action of the environmentally relevant BPA exposure not only contributes to objectively evaluate and predict the potential influence to human health, but also provides theoretical basis and methodological support for assessing health effects trigged by other estrogen-like environmental endocrine disruptors. Based mainly on our recent findings, this review outlines the research progress of molecular mechanism on endocrine disrupting effects of environmental low-dose BPA, existing problems and some consideration for future studies.

论文目录

  • Introduction
  • 1. Wide application and environmental exposure of BPA
  • 2. Potential influence of BPA on human health
  • 3. Non-genomic regulation of environmentally relevant low-dose BPA
  •   3.1. Effects of low-dose BPA on male germ cell function via GPER1 receptor
  •   3.2. Effects of low-dose BPA on thyrotropin-regulated transactivation via integrinαvβ3 receptor
  • 4. Key problems need to be further explored
  • 文章来源

    类型: 期刊论文

    作者: Zhiguo Sheng,Cong Wang,Furong Ren,Yuxiang Liu,Benzhan Zhu

    来源: Journal of Environmental Sciences 2019年01期

    年度: 2019

    分类: 工程科技Ⅰ辑,医药卫生科技

    专业: 环境科学与资源利用,预防医学与卫生学

    单位: Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences,University of Chinese Academy of Sciences,College of Chemistry and Chemical Engineering, Xinjiang Normal University

    基金: supported by Strategic Priority Research Program of the Chinese Academy of Sciences (No.XDB01020300),the National Natural Science Foundation of China (Nos.21377158,21577149,21477139,21237005,21621064 and 21321004)

    分类号: R114;X503.1

    页码: 1-13

    总页数: 13

    文件大小: 255K

    下载量: 42

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    Molecular mechanism of endocrine-disruptive effects induced by Bisphenol A:The role of transmembrane G-protein estrogen receptor 1 and integrin αvβ3
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