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Disruption of the Endocrine Control of Final Oocyte Maturation in Teleosts by Xenobiotic Chemicals

机译:外源性化学物质破坏硬骨鱼卵母细胞最终成熟的内分泌控制

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Final oocyte maturation (FOM) in fish and other vertebrates in under precise endocrine control and involves changes in hormone secretion at all levels of the hypothalamus-pituitary-gonadal axis. Several potential sites and mechanisms of chemical disruption of the endocrine system controlling FOM by are discussed. Neurotoxic chemicals such as lead and PCBs can alter monoamine neurotransmitter function and xenoestrogens can interfere with steroid feedback mechanisms at the hypothalamus and pituitary to impair the neuroendocrine control of gonadotropin secretion. Chemicals which disrupt calcium homeostasis such as cadmium can interfere with calcium-dependent signal transduction pathways activated by reproductive hormones in the pituitary and gonads. Other xenobiotics may disrupt maturation-inducing steroid (MIS) function by impairing its synthesis or receptor binding. The problems in assessing endocrine disruption of FOM are discussed. The relatively few investigatons reported in the literature on endocrine disruption of FOM in fishes by chemicals indicate that organochlorine and organophosphorus pesticides at concentrations less than one ppb can impair induction of FOM in response to gonadotropin and the MIS. Moreover, evidence is presented that certain organochlorine pesticides block MIS action by binding to the MIS receptor which is localized on the oocyte plasma membrane. Steroid membrane receptor function may be particularly susceptible to interference by hydrophilic chemicals. Finally, an in vitro bioassay capable of screening many chemicals simultaneously for their ability to disrupt the endocrine control of FOM is described.
机译:在精确的内分泌控制下,鱼类和其他脊椎动物的最终卵母细胞成熟(FOM)涉及下丘脑-垂体-性腺轴所有水平的激素分泌变化。讨论了控制FOM的内分泌系统化学破坏的几个潜在位点和机制。铅和PCB等神经毒性化学物质可改变单胺神经递质的功能,异种雌激素可干扰下丘脑和垂体的类固醇反馈机制,从而削弱神经内分泌对促性腺激素分泌的控制。破坏钙稳态的化学物质(例如镉)会干扰由垂体和性腺中的生殖激素激活的钙依赖性信号转导途径。其他异种生物可能通过损害其合成或受体结合来破坏诱导成熟的类固醇(MIS)功能。讨论了评估FOM内分泌干扰的问题。文献中关于化学物质对鱼类内分泌破坏FOM的研究相对较少,这表明有机氯和有机磷农药的浓度低于1 ppb会削弱对促性腺激素和MIS引起的FOM的诱导。而且,有证据表明某些有机氯农药通过与位于卵母细胞质膜上的MIS受体结合而阻断MIS的作用。类固醇膜受体功能可能特别容易受到亲水性化学物质的干扰。最后,描述了一种能够同时筛选许多化学物质破坏FOM内分泌控制能力的体外生物测定方法。

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