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中枢神经系统中的胆碱能突触:胆碱乙酰转移酶免疫细胞化学定位研究

Cholinergic synapses in the central nervous system: studies of the immunocytochemical localization of choline acetyltransferase.

作者信息

Houser C R

机构信息

Neurology Service, Veterans Administration Medical Center, West Los Angeles, California 90073.

出版信息

J Electron Microsc Tech. 1990 May;15(1):2-19. doi: 10.1002/jemt.1060150103.

Abstract

Cholinergic synapses can be identified in immunocytochemical preparations by the use of monoclonal antibodies and specific antisera to choline acetyltransferase (ChAT), the synthesizing enzyme for acetylcholine (ACh) and a specific marker for cholinergic neurons. Electron microscopic studies demonstrate that the fibers and varicosities observed in light microscopic preparations of many brain regions are small-diameter unmyelinated axons and vesicle-containing boutons. The labeled boutons generally contain clear vesicles and one or more mitochondrial profiles. Many of these boutons form synaptic contacts, and the synapses are frequently of the symmetric type, displaying thin postsynaptic densities and relatively short contact zones. However, ChAT-labeled synapses with asymmetric junctions are also observed, and their frequency varies among different brain regions. Unlabeled dendritic shafts are the most common postsynaptic elements in virtually all regions examined although other neuronal elements, including dendritic spines and neuronal somata, also receive some cholinergic innervation. ChAT-labeled boutons form synaptic contacts with several different types of unlabeled neurons within the same brain region. Such findings are consistent with a generally diffuse pattern of cholinergic innervation in many parts of the central nervous system. Despite many similarities in the characteristics of ChAT-labeled synapses, there appears to be some heterogeneity in the cholinergic innervation within as well as among brain regions. Differences are observed in the sizes of ChAT-immunoreactive boutons, the types of synaptic contacts, and the predominant postsynaptic elements. Thus, the cholinergic system presents interesting challenges for future studies of the morphological organization and related function of cholinergic synapses.

摘要

通过使用针对胆碱乙酰转移酶(ChAT)的单克隆抗体和特异性抗血清,在免疫细胞化学制剂中可以识别胆碱能突触。胆碱乙酰转移酶是乙酰胆碱(ACh)的合成酶,也是胆碱能神经元的特异性标志物。电子显微镜研究表明,在许多脑区的光学显微镜制剂中观察到的纤维和膨体是小直径无髓轴突和含囊泡的终扣。标记的终扣通常含有清亮囊泡和一个或多个线粒体轮廓。许多这些终扣形成突触联系,并且这些突触通常是对称型的,表现出薄的突触后致密物和相对较短的接触区。然而,也观察到具有不对称连接的ChAT标记的突触,并且它们的频率在不同脑区之间有所变化。在几乎所有检查的区域中,未标记的树突干是最常见的突触后成分,尽管其他神经元成分,包括树突棘和神经元胞体,也接受一些胆碱能神经支配。ChAT标记的终扣在同一脑区内与几种不同类型的未标记神经元形成突触联系。这些发现与中枢神经系统许多部位胆碱能神经支配的一般弥散模式一致。尽管ChAT标记的突触特征有许多相似之处,但在脑区内以及脑区之间的胆碱能神经支配似乎存在一些异质性。在ChAT免疫反应性终扣的大小、突触联系的类型和主要的突触后成分方面观察到差异。因此,胆碱能系统为胆碱能突触的形态组织和相关功能的未来研究提出了有趣的挑战。

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