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从后脑室管膜细胞到下丘脑促性腺激素释放激素神经元的神经通路的形态学分析。

Morphological analysis for neuronal pathway from the hindbrain ependymocytes to the hypothalamic kisspeptin neurons.

作者信息

Deura Chikaya, Minabe Shiori, Ikegami Kana, Inoue Naoko, Uenoyama Yoshihisa, Maeda Kei-Ichiro, Tsukamura Hiroko

机构信息

Graduate School of Bioagricultural Sciences, Nagoya University, Aichi 464-8601, Japan.

Department of Veterinary Medical Sciences, The University of Tokyo, Tokyo 113-8657, Japan.

出版信息

J Reprod Dev. 2019 Apr 12;65(2):129-137. doi: 10.1262/jrd.2018-122. Epub 2019 Jan 19.

Abstract

Hindbrain ependymocytes are postulated to have a glucose-sensing role in regulating gonadal functions. Previous studies have suggested that malnutrition-induced suppression of gonadotropin secretion is mediated by noradrenergic inputs from the A2 region in the solitary tract nucleus to the paraventricular nucleus (PVN), and by corticotropin-releasing hormone (CRH) release in the hypothalamus. However, no morphological evidence to indicate the neural pathway from the hindbrain ependymocytes to hypothalamic kisspeptin neurons, a center for reproductive function in mammals, currently exists. The present study aimed to examine the existence of a neuronal pathway from the hindbrain ependymocytes to kisspeptin neurons in the arcuate nucleus (ARC) and anteroventral periventricular nucleus (AVPV). To determine this, wheat-germ agglutinin (WGA), a trans-synaptic tracer, was injected into the fourth ventricle (4V) in heterozygous Kiss1-tandem dimer Tomato (tdTomato) rats, where kisspeptin neurons were visualized by tdTomato fluorescence. 48 h after the WGA injection, brain sections were taken from the forebrain, midbrain and hindbrain and subjected to double immunohistochemistry for WGA and dopamine β-hydroxylase (DBH) or CRH. WGA immunoreactivities were found in vimentin-immunopositive ependymocytes of the 4V and the central canal (CC), but not in the third ventricle. The WGA immunoreactivities were detected in some tdTomato-expressing cells in the ARC and AVPV, DBH-immunopositive cells in the A1-A7 noradrenergic nuclei, and CRH-immunopositive cells in the PVN. These results suggest that the hindbrain ependymocytes have neuronal connections with the kisspeptin neurons, most probably via hindbrain noradrenergic and CRH neurons to relay low energetic signals for regulation of reproduction.

摘要

后脑室管膜细胞被推测在调节性腺功能中具有葡萄糖感知作用。先前的研究表明,营养不良引起的促性腺激素分泌抑制是由孤束核A2区向室旁核(PVN)的去甲肾上腺素能输入以及下丘脑促肾上腺皮质激素释放激素(CRH)的释放介导的。然而,目前尚无形态学证据表明存在从后脑室管膜细胞到下丘脑吻素神经元(哺乳动物生殖功能的一个中心)的神经通路。本研究旨在检测是否存在从后脑室管膜细胞到弓状核(ARC)和室周前腹侧核(AVPV)中吻素神经元的神经通路。为了确定这一点,将一种跨突触示踪剂小麦胚凝集素(WGA)注射到杂合Kiss1-串联二聚体番茄(tdTomato)大鼠的第四脑室(4V)中,其中吻素神经元通过tdTomato荧光可视化。WGA注射48小时后,从前脑、中脑和后脑取材制作脑切片,并进行WGA和多巴胺β-羟化酶(DBH)或CRH的双重免疫组织化学检测。在第四脑室和中央管(CC)的波形蛋白免疫阳性室管膜细胞中发现了WGA免疫反应性,但在第三脑室中未发现。在ARC和AVPV中一些表达tdTomato的细胞、A1-A7去甲肾上腺素能核中的DBH免疫阳性细胞以及PVN中的CRH免疫阳性细胞中检测到了WGA免疫反应性。这些结果表明,后脑室管膜细胞与吻素神经元存在神经连接,很可能是通过后脑去甲肾上腺素能和CRH神经元来传递低能量信号以调节生殖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/516f/6473108/9f7f7f00aa2c/jrd-65-129-g001.jpg

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