Effect of Endocrine Disrupting Chemicals on HPG Axis: A Reproductive Endocrine Homeostasis

Priya Gupta, Archisman Mahapatra, Anjali Suman, R. Singh
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引用次数: 2

Abstract

The hypothalamic–pituitary-gonadal (HPG) axis plays a crucial and integrative role in the mammalian endocrine regulation to maintain homeostasis. The HPG axis is primarily responsible for governing all the hormonal events related to reproductive activity. Endocrine-disrupting chemicals (EDCs) comprise a diverse group of naturally occurring and synthetic compounds that mimic and interfere with the endogenous chemical hormones. Epidemiological investigations have shown increasing evidence of altered development and detrimental effects on reproductive health during the past 50 years associated with endocrine disruptors affecting the HPG axis. The pleiotropic harmful effects of EDCs act through hormone-dependent downstream signaling pathways responsible for gonad development either through direct interaction with steroid hormone receptor or via epigenetic regulation. Hence, this chapter summarizes the biological plausibility of EDCs exposure and elucidates the mechanism of action underlying EDCs affecting the regulatory circuits of the mammalian HPG axis and reproductive function.
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内分泌干扰物对HPG轴的影响:一种生殖内分泌稳态
下丘脑-垂体-性腺(HPG)轴在哺乳动物内分泌调节中起着至关重要的综合作用,以维持体内平衡。HPG轴主要负责控制与生殖活动有关的所有激素事件。内分泌干扰化学物质(EDCs)包括多种自然产生和合成的化合物,它们模仿和干扰内源性化学激素。流行病学调查显示,在过去50年中,越来越多的证据表明,影响HPG轴的内分泌干扰物与发育改变和对生殖健康的有害影响有关。EDCs通过激素依赖的下游信号通路,通过与类固醇激素受体的直接相互作用或通过表观遗传调控,对性腺发育产生多效性的有害影响。因此,本章总结了EDCs暴露的生物学合理性,并阐明了EDCs影响哺乳动物HPG轴调控回路和生殖功能的作用机制。
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