血清素和血清素能神经元。下丘脑背中缝核和背斜核的放射自显影和免疫细胞化学研究。

La Cellule Pub Date : 1987-01-01
F Arezki, I Afailal, O Bosler, H W Steinbusch, A Calas
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引用次数: 0

摘要

为了确定细胞生理学标准以确定给定神经元是否具有5-羟色胺能,在大鼠脑室内给予(3H)-5-羟色胺或(3H)-多巴胺(DA)的背中音核(NRD)和/或下丘脑背中音核(NDM)的相同切片上,放射自显影与5-羟色胺(5-HT)免疫细胞化学相结合。所有积累(3H)-5-HT的神经元(细胞体、树突和终末)都与(3H)-DA标记的神经元不同,并且在所研究的两个区域都进行了5-HT免疫染色。然而,在示踪剂扩散区域内的一些免疫反应性神经元元素没有表现出明显的放射自显影标记。在NDM中,只有在脑室内给予5-HT后才能检测到5-HT免疫反应性神经细胞,这些细胞被发现与酪氨酸羟化酶免疫反应性和(3H)-DA标记的多巴胺能脑室周围-弓状复合体的神经元明显不同。在电镜下对GAD进行免疫染色后,(3H)-5-HT标记的神经细胞和神经末梢未表现出任何显著的免疫反应性。在NDM中也可以观察到(3H)-DA标记和GAD免疫反应过程分别与5-HT免疫反应或(3H)-5-HT积聚神经元之间的关联。从整体上考虑,加上其他作者先前的观察结果表明,NDM神经元可能合成5-羟色胺,我们的数据表明,一个给定的神经元可以被分类为5-羟色胺能,唯一的基础是它在实验条件下选择性吸收外源性5-羟色胺的能力,与儿茶酚胺能神经元的非种间标记相兼容。它们还为神经化学环境和中枢血清素能神经元的可能控制提供了有价值的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Serotonin and serotoninergic neurons. A radioautographic and immunocytochemical study of the nucleus raphe dorsalis and nucleus dorsomedialis hypothalami.

In an attempt to define cytophysiological criteria with which to establish whether or not a given neuron is serotoninergic, radioautography was combined with serotonin (5-HT) immunocytochemistry on the same sections from the nucleus raphe dorsalis (NRD) and/or nucleus dorsomedialis hypothalami (NDM) in rats subjected to intraventricular administrations of (3H)-5-HT or (3H)-dopamine (DA). All the (3H)-5-HT-accumulating neurons (cell bodies, dendrites and terminals) were found to be distinct from the (3H)-DA labeled ones and invariably immunostained for 5-HT in both regions studied. However, some immunoreactive neuronal elements within the area of tracer diffusion did not exhibit significant radioautographic labeling. In the NDM where 5-HT immunoreactive nerve cells could be detected only after intraventricular administration of 5-HT, these were found to be definitely distinct from the tyrosine hydroxylase immunoreactive and (3H)-DA labeled neurons of the dopaminergic periventricular-arcuate complex. After immunostaining for GAD at the electron microscopic level, (3H)-5-HT labeled nerve cells and terminals were not found to exhibit any significant immunoreactivity. Associations between (3H)-DA labeled and GAD immunoreactive processes with 5-HT immunoreactive or (3H)-5-HT-accumulating neurons, respectively, could also be observed in the NDM. When considered as a whole along with previous observations by other authors indicating a probable synthesis of 5-HT within NDM neurons, our data suggest that a given neuron can be classified as serotoninergic on the sole basis of its ability to selectively take up exogenous 5-HT under experimental conditions compatible with non interspecific labeling of catecholaminergic neurons. They also provide valuable information on the neurochemical environment and possible control of central serotoninergic neurons.

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