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首页> 外文期刊>Frontiers in Neuroscience >Developmental Exposure to Ethinylestradiol Affects Reproductive Physiology, the GnRH Neuroendocrine Network and Behaviors in Female Mouse
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Developmental Exposure to Ethinylestradiol Affects Reproductive Physiology, the GnRH Neuroendocrine Network and Behaviors in Female Mouse

机译:乙炔雌二醇的发育暴露会影响雌性小鼠的生殖生理,GnRH神经内分泌网络和行为。

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During development, environmental estrogens are able to induce an estrogen mimetic action that may interfere with endocrine and neuroendocrine systems. The present study investigated the effects on the reproductive function in female mice following developmental exposure to pharmaceutical ethinylestradiol (EE2), the most widespread and potent synthetic steroid present in aquatic environments. EE2 was administrated in drinking water at environmentally relevant (ENVIR) or pharmacological (PHARMACO) doses [0.1 and 1 μg/kg (body weight)/day respectively], from embryonic day 10 until postnatal day 40. Our results show that both groups of EE2-exposed females had advanced vaginal opening and shorter estrus cycles, but a normal fertility rate compared to CONTROL females. The hypothalamic population of GnRH neurons was affected by EE2 exposure with a significant increase in the number of perikarya in the preoptic area of the PHARMACO group and a modification in their distribution in the ENVIR group, both associated with a marked decrease in GnRH fibers immunoreactivity in the median eminence. In EE2-exposed females, behavioral tests highlighted a disturbed maternal behavior, a higher lordosis response, a lack of discrimination between gonad-intact and castrated males in sexually experienced females, and an increased anxiety-related behavior. Altogether, these results put emphasis on the high sensitivity of sexually dimorphic behaviors and neuroendocrine circuits to disruptive effects of EDCs.
机译:在发育过程中,环境雌激素能够诱导可能干扰内分泌和神经内分泌系统的雌激素模拟作用。本研究调查了雌性炔雌醇(EE2)的发育性暴露对雌性小鼠生殖功能的影响,乙炔雌二醇是在水生环境中存在的最广泛和最有效的合成类固醇。从胚胎第10天到出生后第40天,在环境中(ENVIR)或药理学(PHARMACO)剂量[分别为0.1和1μg/ kg(体重)/天]在饮用水中施用EE2。我们的结果表明,两组暴露于EE2的雌性具有较高的阴道开放度和较短的发情周期,但与对照组相比,其生育率正常。下丘脑GnRH神经元群体受到EE2暴露的影响,PHARMACO组的视光前区域的周核皮数量显着增加,ENVIR组的分布也发生改变,这都与GnRH纤维免疫反应性显着降低有关。中位数突出。在暴露于EE2的女性中,行为测试突出显示了产妇行为受干扰,脊柱前凸反应较高,性经历女性中性腺完整和cast割男性之间缺乏区别,以及与焦虑相关的行为增加。总而言之,这些结果强调了性二态性行为和神经内分泌回路对EDC破坏作用的高度敏感性。

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