首页> 美国卫生研究院文献>Animals : an Open Access Journal from MDPI >Neonatal Exposure to Agonists and Antagonists of Sex Steroid Receptors Affects AMH and FSH Plasma Level and Their Receptors Expression in the Adult Pig Ovary
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Neonatal Exposure to Agonists and Antagonists of Sex Steroid Receptors Affects AMH and FSH Plasma Level and Their Receptors Expression in the Adult Pig Ovary

机译:新生儿暴露于性激素受体的激动剂和拮抗剂会影响成年猪卵巢中AMH和FSH血浆水平及其受体的表达

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摘要

The ovarian development and the establishment of ovarian reserve during fetal and/or neonatal life is critical for future reproductive success. Many environmental chemicals are known to negatively affect development and physiology of human and animal ovaries by interfering with endocrine systems, resulting in aberrant reproductive functions. The present study shows the long-term impact of neonatal exposure to agonists and antagonists of sex steroid receptors on AMH and FSH signalling in the ovary of adult pigs. Our findings suggest alteration in ovarian follicle recruitment from ovarian reserve arising from neonatal disruption of androgen/estrogen signalling induced by environmental endocrine active compounds. Everyday use of many endocrine disruptors is already prohibited after their harmful impacts on normal physiology have become known. Nevertheless, market introduction of new chemicals with potential deleterious influence on reproductive physiology has continued. Our outcomes confirm that a neonatal window plays an essential role in the physiological programming of ovarian function in adult pigs. The influence of environmental chemicals on this critical neonatal window needs to be investigated in order to gain a comprehensive view of deleterious interactions between endocrine disrupting chemicals and ovarian function.
机译:胎儿和/或新生儿生命期间卵巢的发育和卵巢储备的建立对于将来的生殖成功至关重要。已知许多环境化学物质会干扰内分泌系统,从而影响人类和动物卵巢的发育和生理,从而导致异常的生殖功能。本研究显示了成年猪卵巢中新生儿暴露于激动剂和性类固醇受体拮抗剂的长期影响对AMH和FSH信号的影响。我们的研究结果表明,由于环境内分泌活性化合物引起的雄激素/雌激素信号的新生婴儿新生,卵巢储备中的卵泡募集量发生了变化。在已经知道许多内分泌干扰物对正常生理的有害影响之后,已经禁止每天使用它们。然而,继续对潜在对生殖生理造成有害影响的新化学药品投放市场。我们的结果证实,新生窗口在成年猪卵巢功能的生理编程中起着至关重要的作用。为了深入了解破坏内分泌的化学物质与卵巢功能之间的有害相互作用,需要研究环境化学物质对这个重要的新生儿窗口的影响。

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