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Gene-environment interactions in male reproductive health: special reference to the aryl hydrocarbon receptor signaling pathway

机译:男性生殖健康中的基因-环境相互作用:专门提到芳烃受体信号通路

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摘要

Over the last few decades, there have been numerous reports of adverse effects on the reproductive health of wildlife and laboratory animals caused by exposure to endocrine disrupting chemicals (EDCs). The increasing trends in human male reproductive disorders and the mounting evidence for causative environmental factors have therefore sparked growing interest in the health threat posed to humans by EDCs, which are substances in our food, environment and consumer items that interfere with hormone action, biosynthesis or metabolism, resulting in disrupted tissue homeostasis or reproductive function. The mechanisms of EDCs involve a wide array of actions and pathways. Examples include the estrogenic, androgenic, thyroid and retinoid pathways, in which the EDCs may act directly as agonists or antagonists, or indirectly via other nuclear receptors. Dioxins and dioxin-like EDCs exert their biological and toxicological actions through activation of the aryl hydrocarbon-receptor, which besides inducing transcription of detoxifying enzymes also regulates transcriptional activity of other nuclear receptors. There is increasing evidence that genetic predispositions may modify the susceptibility to adverse effects of toxic chemicals. In this review, potential consequences of hereditary predisposition and EDCs are discussed, with a special focus on the currently available publications on interactions between dioxin and androgen signaling.
机译:在过去的几十年中,有许多报道称,暴露于破坏内分泌的化学物质(EDC)对野生动植物和实验动物的生殖健康有不利影响。因此,人类男性生殖疾病的趋势日益增长,以及越来越多的因果性环境因素的证据,激发了人们对EDC对人体健康构成威胁的兴趣,EDC是我们食物,环境和消费品中会干扰激素作用,生物合成或代谢的物质。代谢,导致组织稳态或生殖功能受损。 EDC的机制涉及各种各样的行动和途径。例子包括雌激素,雄激素,甲状腺和类维生素A途径,其中EDC可以直接充当激动剂或拮抗剂,或间接通过其他核受体起作用。二恶英和二恶英样EDC通过激活芳基碳氢化合物受体发挥其生物学和毒理作用,除了诱导解毒酶的转录外,还调节其他核受体的转录活性。越来越多的证据表明,遗传易感性可能会改变对有毒化学物质不利影响的敏感性。在这篇综述中,讨论了遗传易感性和EDC的潜在后果,特别着重于有关二恶英和雄激素信号之间相互作用的当前可用出版物。

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