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大鼠新纹状体中P物质免疫反应性终末的突触后靶点,特别涉及已鉴定的棘状纹状体黑质神经元。

The postsynaptic targets of substance P-immunoreactive terminals in the rat neostriatum with particular reference to identified spiny striatonigral neurons.

作者信息

Bolam J P, Izzo P N

机构信息

MRC Anatomical Neuropharmacology Unit, Department of Pharmacology, Oxford, U.K.

出版信息

Exp Brain Res. 1988;70(2):361-77. doi: 10.1007/BF00248361.

Abstract

Substance P-immunoreactive boutons were examined in the electron microscope in sections of the rat neostriatum that contained retrogradely labelled striatonigral neurons and/or Golgi-impregnated medium-size densely spiny neurons. The post-synaptic targets of the immunoreactive boutons were characterized on the basis of ultrastructural features, their projection to the substantia nigra and/or their somato-dendritic morphology. Substance P-immunoreactive axonal boutons formed symmetrical synaptic specializations. Of a total of 233 randomly identified synaptic boutons 72.5% made contact with dendritic shafts, 15% with dendritic spines and 10.7% with perikarya. The ultrastructural characteristics of some of the postsynaptic neuronal perikarya were consistent with their identification as striatal interneurons. Similarly, the observation of some of the substance P-containing terminals in contact with spines, spine-bearing dendritic shafts and perikarya with the ultrastructural characteristics of medium-size densely spiny neurons suggested that one of the targets of substance P-positive terminals are striatal projection neurons. Direct evidence for this was obtained in sections from rats that had received injections of horseradish peroxidase conjugated with wheatgerm agglutinin in the substantia nigra. The perikarya of retrogradely labeled striatonigral neurons were found to receive symmetrical synaptic input from substance P-positive boutons. Ultrastructural analysis of Golgi-impregnated medium-size densely spiny neurons, some of which were also retrogradely labeled from the substantia nigra, demonstrated directly that this class of neuron was postsynaptic to the substance P-immunoreactive boutons. The combination of Golgi-impregnation with substance P-immunocytochemistry made it possible to study the pattern or topography of the substance P-positive input to medium size densely spiny neurons. The substance P-containing boutons made contact predominantly with perikarya and dendritic shafts. This pattern of input is markedly different from that of other identified inputs to medium-size densely spiny neurons.

摘要

在含有逆行标记的纹状体黑质神经元和/或高尔基浸染的中等大小多棘神经元的大鼠新纹状体切片中,用电镜检查了P物质免疫反应性终扣。根据超微结构特征、它们向黑质的投射和/或它们的体树突形态,对免疫反应性终扣的突触后靶点进行了表征。P物质免疫反应性轴突终扣形成了对称性突触特化。在总共233个随机识别的突触终扣中,72.5%与树突干接触,15%与树突棘接触,10.7%与胞体接触。一些突触后神经元胞体的超微结构特征与它们被鉴定为纹状体中间神经元一致。同样,观察到一些含有P物质的终末与具有中等大小多棘神经元超微结构特征的棘、有棘树突干和胞体接触,这表明P物质阳性终末的靶点之一是纹状体投射神经元。在黑质中注射了与麦胚凝集素结合的辣根过氧化物酶的大鼠切片中获得了这方面的直接证据。发现逆行标记的纹状体黑质神经元的胞体接受来自P物质阳性终扣的对称性突触输入。对高尔基浸染的中等大小多棘神经元进行超微结构分析,其中一些也从黑质逆行标记,直接证明这类神经元是P物质免疫反应性终扣的突触后神经元。高尔基浸染与P物质免疫细胞化学的结合使得研究P物质阳性输入到中等大小多棘神经元的模式或拓扑结构成为可能。含有P物质的终扣主要与胞体和树突干接触。这种输入模式与其他已确定的输入到中等大小多棘神经元的模式明显不同。

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