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成年雌性绵羊和灵长类动物中神经元型一氧化氮合酶与促性腺激素释放激素和 kisspeptin 神经元的神经解剖学关系。

Neuroanatomical Relationship of Neuronal Nitric Oxide Synthase to Gonadotropin-Releasing Hormone and Kisspeptin Neurons in Adult Female Sheep and Primates.

出版信息

Neuroendocrinology. 2018;107(3):218-227. doi: 10.1159/000491393. Epub 2018 Jun 21.

DOI:10.1159/000491393
PMID:29929191
Abstract

BACKGROUND

Neuronal intermediates that communicate estrogen and progesterone feedback to gonadotropin-releasing hormone (GnRH) neurons are essential for modulating reproductive cyclicity. Individually, kisspeptin and nitric oxide (NO) influence GnRH secretion. However, it is possible these 2 neuronal intermediates interact with one another to affect reproductive cyclicity.

METHODS

We investigated the neuroanatomical relationship of one isoform of the enzyme that synthesizes NO, neuronal NO synthase (nNOS), to kisspeptin and GnRH in adult female rhesus monkeys and sheep using dual-label immunofluorescence. Additionally, we evaluated if the phase of the reproductive cycle would affect these relationships.

RESULTS

Overall, no effect of the stage of cycle was observed for any variable in this study. In the arcuate nucleus (ARC) of sheep, 98.8 ± 3.5% of kisspeptin neurons colocalized with nNOS, and kisspeptin close-contacts were observed onto nNOS neurons. In contrast to ewes, no colocalization was observed between kisspeptin and nNOS in the infundibular ARC of primates, but kisspeptin fibers were apposed to nNOS neurons. In the preoptic area of ewes, 15.0 ± 4.2% of GnRH neurons colocalized with nNOS. In primates, 38.8 ± 10.1% of GnRH neurons in the mediobasal hypothalamus colocalized with nNOS, and GnRH close-contacts were observed onto nNOS neurons in both sheep and primates.

CONCLUSION

Although species differences were observed, this work establishes a neuroanatomical framework between nNOS and kisspeptin and nNOS and GnRH in adult female nonhuman primates and sheep.

摘要

背景

沟通雌激素和孕激素反馈至促性腺激素释放激素(GnRH)神经元的神经元中间物对于调节生殖周期性是至关重要的。单独地,kisspeptin 和一氧化氮(NO)影响 GnRH 的分泌。然而,这两种神经元中间物有可能相互作用以影响生殖周期性。

方法

我们使用双重免疫荧光法,研究了合成 NO 的一种酶,即神经元型一氧化氮合酶(nNOS),在成年雌性恒河猴和绵羊中的同型 kisspeptin 和 GnRH 的神经解剖学关系。此外,我们评估了生殖周期的阶段是否会影响这些关系。

结果

总的来说,在本研究中,没有观察到任何变量受周期阶段的影响。在绵羊的弓状核(ARC)中,98.8±3.5%的 kisspeptin 神经元与 nNOS 共定位,并且 kisspeptin 紧密接触到 nNOS 神经元。与绵羊不同的是,在灵长类动物的漏斗状 ARC 中,没有观察到 kisspeptin 和 nNOS 之间的共定位,但 kisspeptin 纤维与 nNOS 神经元相邻。在绵羊的视前区,15.0±4.2%的 GnRH 神经元与 nNOS 共定位。在灵长类动物中,38.8±10.1%的中脑基底部 GnRH 神经元与 nNOS 共定位,并且在绵羊和灵长类动物中都观察到 GnRH 紧密接触到 nNOS 神经元。

结论

尽管观察到了种间差异,但这项工作为成年雌性非人类灵长类动物和绵羊中的 nNOS 和 kisspeptin 以及 nNOS 和 GnRH 之间建立了神经解剖学框架。

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