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大鼠缰核胆碱能神经元部分发育性缺失后缰核-脚间核连接的免疫组织化学和神经化学研究

Immunohistochemistry and neurochemistry of the habenulo-interpeduncular connection after partial developmental depletion of habenular cholinergic neurons in the rat.

作者信息

Fasolo A, Virgili M, Panzica G C, Contestabile A

机构信息

Department of Animal Biology, University of Torino, Italy.

出版信息

Exp Brain Res. 1992;90(2):297-301. doi: 10.1007/BF00227241.

Abstract

The habenulo-interpeduncular system of the rat constitutes an interesting model to address quantitatively problems related to synaptogenesis and to the interactions between neuronal populations after selective alteration of these elements during development. In the present study this has been achieved by experimentally reducing, through gestational treatment with methylazoxymethanol acetate (MAM), the population of cholinergic neurons of the medial habenula which projects to the interpeduncular nucleus. Immunohistochemical analysis gave evidence that the topographical localization of the cholinergic and the substance P-containing populations in the medial habenula was not altered by MAM treatment. Furthermore, the topographical distribution of cholinergic fibers and terminals in the interpeduncular nucleus, which reflects the habenulo-interpeduncular projection as well as cholinergic projections coming from different sources, was substantially preserved. The same was also true concerning the terminal distribution of substance P in the interpeduncular nucleus. Quantitative radioassays demonstrated a sizable decrease of overall ChAT activity in both the habenulae and the interpeduncular nucleus. By comparison of 1 month-old and 3 month-old animals it appeared that this effect was partially reversed with age in the interpeduncular nucleus.

摘要

大鼠的缰核-脚间核系统构成了一个有趣的模型,可用于定量解决与突触发生以及发育过程中这些元件发生选择性改变后神经元群体之间相互作用相关的问题。在本研究中,通过在孕期用乙酸甲基偶氮甲醇(MAM)进行处理,实验性地减少了投射至脚间核的内侧缰核胆碱能神经元群体,从而实现了这一点。免疫组织化学分析表明,MAM处理并未改变内侧缰核中胆碱能和含P物质群体的拓扑定位。此外,脚间核中胆碱能纤维和终末的拓扑分布基本得以保留,该分布反映了缰核-脚间核投射以及来自不同来源的胆碱能投射。脚间核中P物质的终末分布情况亦是如此。定量放射分析表明,缰核和脚间核中的总体胆碱乙酰转移酶(ChAT)活性均显著降低。通过比较1月龄和3月龄动物发现,在脚间核中,这种效应随年龄增长而部分逆转。

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