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大鼠颈上神经节中的神经元间连接;细胞内辣根过氧化物酶标记揭示的调节性相互作用的可能解剖学基础。

Neuroneuronal interconnections in the rat superior cervical ganglion; possible anatomical bases for modulatory interactions revealed by intracellular horseradish peroxidase labelling.

作者信息

Kiraly M, Favrod P, Matthews M R

机构信息

Institut de Physiologie, Faculté de Médecine, Université de Lausanne, Switzerland.

出版信息

Neuroscience. 1989;33(3):617-42. doi: 10.1016/0306-4522(89)90413-2.

Abstract

Electrophysiologically identified neurons of rat superior cervical ganglion were intracellularly injected with horseradish peroxidase and processed for light and electron microscopic observation. At light microscope level, neurons could be classified according to their dendritic arborization pattern in the vicinity of the soma into radiate, tufted and intermediate types. Upon electrical stimulation of the internal and external carotid nerves it was observed that radiate and intermediate neurons sent their axons into one or the other of these nerve trunks, whereas a majority of tufted neurons gave no response to stimulation of either of these postganglionic nerves. Electron microscopic exploration of horseradish peroxidase-labelled neurons revealed a surprisingly high prevalence of interconnectivity between ganglionic neurons. These contacts were both dendrosomatic and dendrodendritic, and were a universal feature of the labelled neurons explored. Twenty-two of the 23 labelled cells were found to receive direct dendritic appositions on their somata, and 13 of these 23 cells were seen each to send their dendrites into contact with at least one unlabelled neuronal soma. Dendrodendritic contacts were observed for 87% of the labelled neurons, and most of the cells (80%) were seen to form triadic contacts which included two dendrites and a preganglionic nerve ending. All these figures represent minimum incidences. None of the dendrosomatic or dendrodendritic appositions observed was overtly synaptic although several morphological features indicated the possibility of somatic and or dendritic release and uptake at sites of apposition. It is suggested that the observed appositions provide anatomical substrates for modulatory interactions between the ganglionic neurons, possibly involving slow potentials or the switching of metabolic pathways.

摘要

对大鼠颈上神经节经电生理鉴定的神经元进行辣根过氧化物酶的细胞内注射,并进行光镜和电镜观察。在光镜水平上,神经元可根据其胞体附近的树突分支模式分为辐射型、簇状型和中间型。对颈内和颈外神经进行电刺激时,观察到辐射型和中间型神经元将其轴突发送到其中一条神经干中,而大多数簇状型神经元对这些节后神经中的任何一条刺激均无反应。对辣根过氧化物酶标记的神经元进行电镜检查发现,神经节神经元之间的相互连接发生率惊人地高。这些接触既有树突-胞体的,也有树突-树突的,是所研究的标记神经元的普遍特征。在23个标记细胞中,有22个在其胞体上接受直接的树突附着,在这23个细胞中,有13个细胞的树突与至少一个未标记的神经元胞体接触。在87%的标记神经元中观察到树突-树突接触,并且大多数细胞(80%)形成三联体接触,其中包括两个树突和一个节前神经末梢。所有这些数字均代表最低发生率。尽管有几个形态学特征表明在附着部位可能存在胞体和/或树突的释放和摄取,但所观察到的树突-胞体或树突-树突附着均未明显形成突触。有人认为,所观察到的附着为神经节神经元之间的调节性相互作用提供了解剖学基础,可能涉及慢电位或代谢途径的转换。

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