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大鼠腹侧被盖区脑啡肽和酪氨酸羟化酶免疫反应性的双重超微结构定位:阿片-多巴胺相互作用的多种底物

Dual ultrastructural localization of enkephalin and tyrosine hydroxylase immunoreactivity in the rat ventral tegmental area: multiple substrates for opiate-dopamine interactions.

作者信息

Sesack S R, Pickel V M

机构信息

Department of Neurology and Neuroscience, Cornell University Medical College, New York, New York 10021.

出版信息

J Neurosci. 1992 Apr;12(4):1335-50. doi: 10.1523/JNEUROSCI.12-04-01335.1992.

DOI:10.1523/JNEUROSCI.12-04-01335.1992
PMID:1348271
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6575793/
Abstract

Endogenous opiates modulate activity in the mesocorticolimbic dopaminergic system, and this interaction is thought to underlie major aspects of motoric, reward-seeking, and stress-coping behaviors. We sought to determine the ultrastructural substrate for this modulatory action at the level of dopaminergic perikarya in the rat ventral tegmental area (VTA). Using a dual-labeling, immunoperoxidase and immunogold-silver method, we localized antisera directed against leu5-enkephalin (ENK) and the catecholamine-synthesizing enzyme tyrosine hydroxylase (TH) in acrolein-fixed sections through the VTA. ENK-like immunoreactivity (ENK-LI) was visualized within unmyelinated axons and in axon terminals. In terminals, ENK-LI was densely localized to one or more dense-cored vesicles and either densely or lightly detected surrounding small clear vesicles. Immunoreactive dense-cored vesicles were occasionally associated with the presynaptic specialization but were more frequently detected at distant sites along the plasmalemmal surface, often in apposition to astrocytic processes. ENK-immunoreactive terminals formed both symmetric and asymmetric synapses, most frequently on large proximal dendrites. Direct appositions without glial separation were also detected between terminals containing ENK-LI and other ENK-labeled or unlabeled terminals. In contrast to ENK-LI, immunolabeling for TH was primarily detected within perikarya and dendrites in the VTA. Of the ENK-immunoreactive terminals that formed synaptic contacts in single sections, approximately 50-60% were in association with TH-labeled dendrites. The remainder formed synapses on dendrites lacking detectable immunoreactivity for TH. Multiple ENK-immunoreactive terminals occasionally formed convergent synaptic contacts on single TH-labeled or unlabeled dendrites. Furthermore, individual ENK-labeled terminals sometimes formed divergent contacts on two TH-labeled or unlabeled dendrites. When a single ENK-immunoreactive terminal made dual synaptic contacts on TH-labeled dendrites, the latter were usually in close apposition to one another. These findings represent the first ultrastructural demonstration that opioid peptide-containing terminals provide a direct synaptic input to dopaminergic, as well as nondopaminergic, neurons in the VTA. In addition, the morphological evidence suggests that endogenous opioid peptides (1) may be released from nonsynaptic sites, (2) may modulate the release of transmitters from other terminals, and/or (3) may synchronize the activity of multiple neuronal targets in the VTA. These results provide a number of morphological substrates through which opiates may directly or indirectly regulate activity in mesocorticolimbic dopaminergic pathways.

摘要

内源性阿片肽调节中脑皮质边缘多巴胺能系统的活性,这种相互作用被认为是运动、奖赏寻求和应激应对行为主要方面的基础。我们试图确定在大鼠腹侧被盖区(VTA)多巴胺能神经元胞体水平上这种调节作用的超微结构基础。我们采用双标记免疫过氧化物酶和免疫金银法,在经丙烯醛固定的穿过VTA的切片中,定位针对亮氨酸脑啡肽(ENK)和儿茶酚胺合成酶酪氨酸羟化酶(TH)的抗血清。ENK样免疫反应性(ENK-LI)在无髓轴突和轴突终末中可见。在终末中,ENK-LI密集地定位于一个或多个有致密核心的囊泡,并且在小清亮囊泡周围密集或轻度检测到。免疫反应性有致密核心的囊泡偶尔与突触前特化相关,但更频繁地在沿质膜表面的远处位点检测到,常与星形胶质细胞突起相邻。ENK免疫反应性终末形成对称和不对称突触,最常见于大的近端树突上。在含有ENK-LI的终末与其他ENK标记或未标记的终末之间也检测到没有神经胶质分隔的直接并列。与ENK-LI相反,TH的免疫标记主要在VTA的神经元胞体和树突中检测到。在单切片中形成突触联系的ENK免疫反应性终末中,约50-60%与TH标记的树突相关。其余的在缺乏TH可检测免疫反应性的树突上形成突触。多个ENK免疫反应性终末偶尔在单个TH标记或未标记的树突上形成汇聚性突触联系。此外,单个ENK标记的终末有时在两个TH标记或未标记的树突上形成发散性联系。当单个ENK免疫反应性终末在TH标记的树突上形成双重突触联系时,后者通常彼此紧密并列。这些发现首次在超微结构上证明含阿片肽的终末为VTA中的多巴胺能神经元以及非多巴胺能神经元提供直接的突触输入。此外,形态学证据表明内源性阿片肽(1)可能从非突触位点释放,(2)可能调节其他终末递质的释放,和/或(3)可能使VTA中多个神经元靶点的活性同步。这些结果提供了许多形态学基础,通过这些基础阿片肽可能直接或间接调节中脑皮质边缘多巴胺能通路的活性。