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Neural Mechanisms Underlying the Disruption of Male Courtship Behavior by Adult Exposure to Di(2-ethylhexyl) Phthalate in Mice

机译:成年暴露于邻苯二甲酸二(2-乙基己基)酯破坏男性求爱行为的神经机制

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Background: Courtship behavior plays a critical role in attracting females and reproduction success. However, the effects of exposure to a ubiquitous contaminant di(2-ethylhexyl) phthalate (DEHP) on these behaviors and, in particular, on courtship vocalizations have not been examined. Objective: The effects of adult exposure to DEHP on courtship and mating behaviors and gonadotropic axis and neural mechanisms involved in DEHP-induced effects were analyzed in male mice. Methods: Adult C57BL/6J males were orally exposed to DEHP (0, 0.5, 5, and 50 μg/kg/d) for 4 wk. Olfactory preference, ultrasonic vocalizations (USVs), partner preference and mating, as well as locomotor activity and motor coordination, were measured. The kisspeptin system and testosterone levels were analyzed. Proteomic and molecular studies were conducted on the hypothalamic preoptic nucleus, the key region involved in sexual motivation to vocalize and mate. Results: DEHP at 50 μg/kg/d reduced the emission of USVs, whereas lower doses changed the ratio of syllable categories. This was associated with diminished sexual interest of female partners toward males exposed to 5 or 50 μg/kg/d and increased latency to mate, despite normal olfactory preference. The kisspeptin system and circulating testosterone levels were unaffected. In DEHP-exposed males, proteomic analysis of the preoptic nucleus identified differentially expressed proteins connected to the androgen receptor (AR). Indeed, exposure to 5 or 50 μg/kg/d of DEHP induced selective AR downregulation in this nucleus and upstream chemosensory regions. The involvement of AR changes in the observed alterations was further supported by the reduced emission of courtship vocalizations in males with disrupted neural AR expression. Conclusions: These data demonstrate the critical role of neural AR in courtship vocalizations and raises the possibility that the vulnerability of this signaling pathway to exposure to endocrine disrupters may be detrimental for courtship communication and mating in several species. https://doi.org/10.1289/EHP1443.
机译:背景:求爱行为在吸引女性和繁殖成功中起着至关重要的作用。但是,尚未研究暴露于普遍存在的邻苯二甲酸二(2-乙基己基)邻苯二甲酸酯(DEHP)对这些行为的影响,尤其是对求爱发声的影响。目的:分析成年DEHP暴露对雄性小鼠的求爱和交配行为以及促性腺轴和DEHP诱导作用的神经机制的影响。方法:将成年C57BL / 6J男性口服DEHP(0、0.5、5和50μg/ kg / d)4周。测量嗅觉偏好,超声发声(USV),伴侣偏好和交配,以及运动活动和运动协调。分析了吻肽系统和睾丸激素水平。对下丘脑视前核进行了蛋白质组学和分子研究,该下丘脑是参与发声和交配的性动机的关键区域。结果:DEHP的浓度为50μg/ kg / d时,USV的排放减少,而较低的剂量改变了音节类别的比率。尽管嗅觉正常,这与女性伴侣对暴露于5或50μg/ kg / d的男性的性兴趣降低以及交配的潜伏期延长有关。 Kisspeptin系统和循环睾丸激素水平不受影响。在暴露于DEHP的雄性中,对视前核的蛋白质组学分析确定了与雄激素受体(AR)连接的差异表达蛋白。实际上,暴露于5或50μg/ kg / d的DEHP会在该细胞核和上游化学感觉区域引起选择性的AR下调。 AR的改变参与了观察到的变化,这进一步得到了神经AR表达受阻的男性求爱发声减少的支持。结论:这些数据证明了神经AR在求爱发声中的关键作用,并增加了这种信号通路暴露于内分泌干扰物的脆弱性可能会损害求爱的沟通和交配。 https://doi.org/10.1289/EHP1443。

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