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豚鼠腹腔神经节神经元外周输入汇聚的电生理分析

Electrophysiological analysis of the convergence of peripheral inputs onto neurons of the coeliac ganglion in the guinea pig.

作者信息

Stebbing M J, Bornstein J C

机构信息

Department of Physiology, University of Melbourne, Parkville, Victoria, Australia.

出版信息

J Auton Nerv Syst. 1994 Jan-Feb;46(1-2):93-105. doi: 10.1016/0165-1838(94)90147-3.

Abstract

The convergence of intestinofugal axons from different intestinal regions onto individual neurons in the coeliac ganglion of the guinea pig was investigated using intracellular recording methods in vitro. Peripheral nerve trunks from the distal ileum, the most proximal colon and the colon near the colonic flexure were electrically stimulated along with preganglionic fibres running in the splanchnic nerve. Fast cholinergic excitatory synaptic potentials (EPSPs) were seen in ganglion cells in response to stimulation of each nerve trunk. Roughly half of 78 neurons impaled received inputs from stimulation of peripheral nerves, and almost all of these received input from the proximal colon. Most cells responded to stimulation of more than one peripheral nerve indicating that coeliac neurons receive converging inputs from intestinofugal neurons located in more than one intestinal region. In a second series of experiments, segments of intestine were left attached to the ganglion and distended with saline to stimulate peripheral mechanosensory input to the coeliac ganglion. In each experiment, two segments were stimulated. A subgroup of ganglion cells exhibited spontaneous fast EPSPs and the frequency of these potentials was increased by distension of one or other of the attached intestinal segments. However, few neurons responded to distension of both of the attached intestinal segments suggesting that some of the intestinofugal inputs to the coeliac ganglion identified by electrical stimulation may be sensitive to sensory modalities other than distension. Hexamethonium (0.5 mM) applied to the intestine, and not to the coeliac ganglion, reduced the frequency of the spontaneous synaptic potentials seen in coeliac ganglion cells, but did not abolish the response to distension of the colon (n = 8). When the Ca2+ concentration of the solution bathing the proximal colon was reduced to block all synaptic transmission in the enteric plexuses the background synaptic input was further depressed, but again the response to distension was little changed (n = 4). This suggests that at least some of the neurons projecting from the colon to the coeliac ganglion are first order mechanosensory neurons.

摘要

采用体外细胞内记录方法,研究了豚鼠腹腔神经节中来自不同肠段的肠离心轴突向单个神经元的汇聚情况。对回肠末端、最靠近近端的结肠以及结肠弯曲处附近的结肠的外周神经干,以及在内脏神经中走行的节前纤维进行电刺激。对每个神经干进行刺激时,在神经节细胞中可观察到快速胆碱能兴奋性突触后电位(EPSP)。在刺入的78个神经元中,约一半接受了来自外周神经刺激的输入,并且几乎所有这些神经元都接受了来自近端结肠的输入。大多数细胞对一个以上外周神经的刺激有反应,这表明腹腔神经节神经元接受来自位于一个以上肠段的肠离心神经元的汇聚输入。在第二组实验中,将肠段与神经节相连并用盐水扩张,以刺激腹腔神经节的外周机械感觉输入。在每个实验中,刺激两个肠段。一组神经节细胞表现出自发性快速EPSP,并且这些电位的频率因一个或另一个相连肠段的扩张而增加。然而,很少有神经元对两个相连肠段的扩张都有反应,这表明通过电刺激确定的一些向腹腔神经节的肠离心输入可能对除扩张以外的感觉模式敏感。将六甲铵(0.5 mM)应用于肠而非腹腔神经节,可降低腹腔神经节细胞中观察到的自发性突触电位的频率,但并未消除对结肠扩张的反应(n = 8)。当将灌流近端结肠的溶液中的Ca2+浓度降低以阻断肠神经丛中的所有突触传递时,背景突触输入进一步降低,但对扩张的反应再次变化不大(n = 4)。这表明,至少一些从结肠投射到腹腔神经节的神经元是一级机械感觉神经元。

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