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Review: neuroestrogen regulation of socio-sexual behavior of males

机译:评论:男性社会性别行为的神经雌激素调节

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摘要

It is thought that estrogen (neuroestrogen) synthesized by the action of aromatase in the brain from testosterone activates male socio-sexual behaviors, such as aggression and sexual behavior in birds. We recently found that gonadotropin-inhibitory hormone (GnIH), a hypothalamic neuropeptide, inhibits socio-sexual behaviors of male quail by directly activating aromatase and increasing neuroestrogen synthesis in the preoptic area (POA). The POA is thought to be the most critical site of aromatization and neuroestrogen action for the regulation of socio-sexual behavior of male birds. We concluded that GnIH inhibits socio-sexual behaviors of male quail by increasing neuroestrogen concentration beyond its optimal concentration in the brain for expression of socio-sexual behavior. On the other hand, it has been reported that dopamine and glutamate, which stimulate male socio-sexual behavior in birds and mammals, inhibit the activity of aromatase in the POA. Multiple studies also report that the activity of aromatase or neuroestrogen is negatively correlated with changes in male socio-sexual behavior in fish, birds, and mammals including humans. Here, we review previous studies that investigated the role of neuroestrogen in the regulation of male socio-sexual behavior and reconsider the hypothesis that neuroestrogen activates male socio-sexual behavior in vertebrates. It is considered that basal concentration of neuroestrogen is required for the maintenance of male socio-sexual behavior but higher concentration of neuroestrogen may inhibit male socio-sexual behavior.
机译:据认为,由脑中的睾丸激素通过芳香化酶的作用合成的雌激素(神经雌激素)可激活男性的社会性行为,例如鸟类的攻击性行为和性行为。我们最近发现,促性腺激素抑制激素(GnIH),一种下丘脑神经肽,可通过直接激活芳香化酶并增加视前区(POA)中的神经雌激素合成来抑制雄性鹌鹑的性交行为。 POA被认为是调节雄鸟社会性别行为的最重要的芳香化和神经雌激素作用的部位。我们得出的结论是,GnIH通过增加神经雌激素的浓度,使其超过表达社交性行为的大脑中的最佳浓度,从而抑制了雄性鹌鹑的社交性行为。另一方面,据报道多巴胺和谷氨酸刺激鸟和哺乳动物中的男性性行为,抑制了POA中的芳香化酶活性。多项研究还报告,芳香酶或神经雌激素的活性与鱼类,鸟类和包括人类在内的哺乳动物的男性社会性行为的变化呈负相关。在这里,我们回顾以前的研究,调查了神经雌激素在调节男性社会性行为中的作用,并重新考虑了神经雌激素激活脊椎动物中男性社会性行为的假设。据认为,维持男性的社会性行为需要神经雌激素的基础浓度,但是较高的神经雌激素浓度可能会抑制男性的社会性行为。

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