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促黄体激素释放激素、kisspeptin 和雌激素受体 α 与青春期前雌性绵羊的神经元型一氧化氮合酶神经元共定位。

Kisspeptin, gonadotrophin-releasing hormone and oestrogen receptor α colocalise with neuronal nitric oxide synthase neurones in prepubertal female sheep.

机构信息

Department of Physiology and Pharmacology, West Virginia University, Morgantown, WV, USA.

Davis and Elkins College, Elkins, WV, USA.

出版信息

J Neuroendocrinol. 2018 Jan;30(1). doi: 10.1111/jne.12560.

Abstract

Puberty is a process that integrates multiple inputs ultimately resulting in an increase in gonadotrophin-releasing hormone (GnRH) secretion. Although kisspeptin neurones play an integral role in GnRH secretion and puberty onset, other systems are also likely important. One potential component is nitric oxide (NO), a gaseous neurotransmitter synthesised by nitric oxide synthase (NOS). The present study aimed to neuroanatomically characterise neuronal NOS (nNOS) in prepubertal female sheep and determine whether oestradiol exerts effects on this system. Luteinising hormone secretion was reduced by oestradiol treatment in prepubertal ovariectomised ewes. Neurones immunoreactive for nNOS were identified in several areas, with the greatest number present in the ventrolateral portion of the ventromedial hypothalamus, followed by the ventromedial hypothalamus, preoptic area (POA) and arcuate nucleus (ARC). Next, we determined whether nNOS neurones contained oestrogen receptor (ER)α and could potentially communicate oestradiol (E ) feedback to GnRH neurones. Neuronal NOS neurones contained ERα with the percentage of coexpression (12%-40%) depending upon the area analysed. We next investigated whether a neuroanatomical relationship existed between nNOS and kisspeptin or nNOS and GnRH neurones. A high percentage of kisspeptin neurones in the POA (79%) and ARC (98%) colocalised with nNOS. Kisspeptin close contacts were also associated with nNOS neurones. A greater number of close contacts were observed in the ARC than the POA. A high percentage of POA GnRH neurones (79%) also expressed nNOS, although no GnRH close contacts were observed onto nNOS neurones. Neither the numbers of nNOS neurones in the POA or hypothalamus, nor the percentage of nNOS coexpression with GnRH, kisspeptin or ERα were influenced by oestradiol. These experiments reveal that a neuroanatomical relationship exists between both nNOS and kisspeptin and nNOS and GnRH in prepubertal ewes. Therefore, nNOS may act both directly and indirectly to influence GnRH secretion in prepubertal sheep.

摘要

青春期是一个整合多种输入最终导致促性腺激素释放激素 (GnRH) 分泌增加的过程。虽然 kisspeptin 神经元在 GnRH 分泌和青春期开始中发挥着重要作用,但其他系统也可能很重要。一个潜在的组成部分是一氧化氮 (NO),一种由一氧化氮合酶 (NOS) 合成的气态神经递质。本研究旨在对青春期前雌性绵羊的神经元 NOS (nNOS) 进行神经解剖学特征描述,并确定雌激素是否对该系统产生影响。雌激素处理可降低青春期前卵巢切除绵羊的黄体生成素分泌。在几个区域鉴定出对 nNOS 免疫反应的神经元,其中 ventromedial hypothalamus 的腹外侧部分的神经元数量最多,其次是 ventromedial hypothalamus、视前区 (POA) 和弓状核 (ARC)。接下来,我们确定 nNOS 神经元是否含有雌激素受体 (ER)α,并可能将雌激素 (E2) 反馈传递给 GnRH 神经元。神经元 NOS 神经元含有 ERα,其共表达百分比 (12%-40%) 取决于分析的区域。我们接下来研究了 nNOS 和 kisspeptin 或 nNOS 和 GnRH 神经元之间是否存在神经解剖学关系。POA(79%)和 ARC(98%)中的 kisspeptin 神经元有很大比例与 nNOS 共表达。 kisspeptin 紧密接触也与 nNOS 神经元有关。在 ARC 中观察到的紧密接触比在 POA 中更多。POA GnRH 神经元(79%)也表达 nNOS,但未观察到 GnRH 与 nNOS 神经元的紧密接触。POA 或下丘脑的 nNOS 神经元数量以及 nNOS 与 GnRH、kisspeptin 或 ERα 的共表达百分比均不受雌激素影响。这些实验表明,在青春期前的绵羊中,nNOS 与 kisspeptin 之间以及 nNOS 与 GnRH 之间存在神经解剖学关系。因此,nNOS 可能直接和间接作用于青春期前绵羊 GnRH 的分泌。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7810/5786465/a12d66e3a5ff/nihms922766f1.jpg

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