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多突触自主神经节细胞的突触组织和乙酰胆碱敏感性

Synaptic organization and acetylcholine sensitivity of multiply innervated autonomic ganglion cells.

作者信息

Roper S, Purves D, McMahan U J

出版信息

Cold Spring Harb Symp Quant Biol. 1976;40:283-95. doi: 10.1101/sqb.1976.040.01.029.

Abstract

The principal cells of the mudpuppy cardiac ganglion receive synapses from three sources: vagal axons, interneurons and axon collaterals from other principal cells. The simplicity of the structural organization and the visual clarity in the living preparation provide favorable conditions for examining the function of these synapses and how different classes of synapses on the same cell influence its function. We have studied the sensitivity of the principal cells to iontophoretically applied acetylcholine--the transmitter at synapses made by the vagal axons and by postganglionic axon collaterals from other principal cells. In normal ganglia, the ACh sensitivity on the cell surface is highest at the region of synapses. Partial denervation, produced by severing the vagus nerves, results in an increased ACh sensitivity in nonsynaptic areas but does not appear to affect synaptic transmission at the remaining synapses.

摘要

泥螈心脏神经节的主细胞接受来自三种来源的突触

迷走神经轴突、中间神经元以及其他主细胞的轴突侧支。其结构组织的简单性以及活体标本中的视觉清晰度为研究这些突触的功能以及同一细胞上不同类型的突触如何影响其功能提供了有利条件。我们研究了主细胞对离子电泳施加的乙酰胆碱(迷走神经轴突和其他主细胞的节后轴突侧支形成的突触处的递质)的敏感性。在正常神经节中,细胞表面对乙酰胆碱的敏感性在突触区域最高。切断迷走神经造成的部分去神经支配会导致非突触区域乙酰胆碱敏感性增加,但似乎并不影响其余突触处的突触传递。

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