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结肠扩张在哺乳动物交感神经节中产生的快突触电位和慢突触电位。

Fast and slow synaptic potentials produced in a mammalian sympathetic ganglion by colon distension.

作者信息

Peters S, Kreulen D L

出版信息

Proc Natl Acad Sci U S A. 1986 Mar;83(6):1941-4. doi: 10.1073/pnas.83.6.1941.

Abstract

Radial distension of the large intestine produced a slow depolarization in a population of neurons in the inferior mesenteric ganglion of the guinea pig. The slow potentials often occurred simultaneously with cholinergic fast potentials [( excitatory postsynaptic potentials (EPSPs]) yet persisted in the presence of nicotinic and muscarinic cholinergic antagonists when all fast EPSPs were absent. The amplitude of the distension-induced noncholinergic slow depolarization increased with increasing distension pressure. For distensions of 1-min duration at pressures of 10-20 cm of water, the mean depolarization amplitude was 3.4 mV. The slow depolarization was associated with an increase in membrane resistance, and prolonged periods of colon distension resulted in a tachyphylaxis of the depolarization. Desensitization of ganglion cells to the peptide substance P attenuated the distension-induced slow potential by an average of 49% +/- 17%. Thus, two colonic mechanosensory afferent pathways converge on principal ganglion cells in the inferior mesenteric ganglion: one was previously described to be mediated by acetylcholine, and the other is described here, whose transmitter remains to be determined but which preliminary evidence suggests is mediated in part by substance P. The noncholinergic afferent pathway may enhance the intestinal inhibitory reflex mediated by cholinergic mechanosensory afferent input to the abdominal prevertebral sympathetic ganglia.

摘要

豚鼠肠系膜下神经节中,大肠的径向扩张可使一群神经元产生缓慢去极化。这些缓慢电位常与胆碱能快速电位(兴奋性突触后电位[EPSP])同时出现,且在所有快速EPSP消失时,在烟碱型和毒蕈碱型胆碱能拮抗剂存在的情况下仍持续存在。扩张诱导的非胆碱能缓慢去极化的幅度随扩张压力的增加而增大。对于在10 - 20厘米水柱压力下持续1分钟的扩张,平均去极化幅度为3.4毫伏。缓慢去极化与膜电阻增加有关,长时间的结肠扩张导致去极化快速耐受。神经节细胞对肽物质P脱敏后,扩张诱导的缓慢电位平均衰减49%±17%。因此,两条结肠机械感觉传入通路汇聚于肠系膜下神经节中的主神经节细胞:一条先前被描述为由乙酰胆碱介导,另一条在此描述,其递质尚待确定,但初步证据表明部分由物质P介导。非胆碱能传入通路可能增强由胆碱能机械感觉传入输入到腹前交感神经节所介导的肠抑制反射。

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