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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Neurons in the principal nucleus of the bed nuclei of the stria terminalis provide a sexually dimorphic gabaergic input to the anteroventral periventricular nucleus of the hypothalamus.
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Neurons in the principal nucleus of the bed nuclei of the stria terminalis provide a sexually dimorphic gabaergic input to the anteroventral periventricular nucleus of the hypothalamus.

机译:纹状体终末床核主核中的神经元为下丘脑前脑室周围核提供有性双态gabaergic输入。

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摘要

Neurons of the principal nucleus of the bed nuclei of the stria terminalis (BSTp) process pheromonal and viscerosensory stimuli associated with reproduction and relay this information to preoptic and hypothalamic cell groups that regulate reproductive function. The anteroventral periventricular nucleus of the hypothalamus (AVPV), a nucleus involved in the regulation of gonadotropin secretory patterns, receives dense projections from BSTp neurons in males but not in females. By injecting the anterograde tracer, Phaseolus vulgaris leucoagglutinin (PHAL), into the BSTp of rats and immunohistochemically colocalizing the GABA synthetic enzyme, GAD65, to PHAL-immunoreactive fibers in the AVPV, we tested the hypothesis that these sex-specific projections arise from BSTp neurons that synthesize the inhibitory neurotransmitter GABA. Although dense GAD65-immunoreactive fiber terminals were observed in both the male and female AVPV, higher numbers of GAD65-labeled terminals were found in the male, and those localized to PHAL-immunoreactive fibers were seen almost exclusively in males. Treatment of newborn females with testosterone or neonatal orchidectomy of males reversed these sex differences, while GAD65-immunoreactivity in the AVPV was not altered in response to exogenous hormone treatments administered to peripubertal animals. Our results suggest that projections from BSTp neurons constitute a stable, sex-specific GABAergic input to the AVPV that is patterned permanently by perinatal hormone exposure.
机译:终末纹(BSTp)床核主核的神经元过程与繁殖相关的信息素和内脏刺激过程,并将此信息传递给调节生殖功能的前视和下丘脑细胞群。下丘脑的前房室周围核(AVPV)是参与促性腺激素分泌模式调节的核,在男性中而不是在女性中受到BSTp神经元的密集投射。通过将顺行示踪剂菜豆白斑凝集素(PHAL)注入大鼠的BSTp中,并将GABA合成酶GAD65免疫组化共定位于AVPV中的PHAL免疫反应性纤维,我们测试了这些性别特异性预测源自BSTp的假设合成抑制性神经递质GABA的神经元。尽管在雄性和雌性AVPV中均观察到致密的GAD65免疫反应性纤维末端,但在雄性中发现了更高数量的GAD65标记的末端,而定位于PHAL免疫反应性纤维的末端几乎只在雄性中观察到。用睾丸激素治疗新生女性或对雄性进行新生儿睾丸切除术可以逆转这些性别差异,而对青春期前动物进行外源激素治疗后,AVPV中的GAD65免疫反应性没有改变。我们的结果表明,来自BSTp神经元的预测构成了AVPV的稳定,性别特定的GABA能输入,该输入由围产期激素暴露永久性地形成。

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