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猫膀胱副交感神经元节后刺激诱发的突触电位

Synaptic potentials induced by postganglionic stimulations in cat bladder parasympathetic neurones.

作者信息

Kumamoto E

机构信息

Department of Pharmacology and Toxicology, University of Texas Medical Branch, Galveston 77550.

出版信息

Pflugers Arch. 1989 Jun;414(2):235-44. doi: 10.1007/BF00580969.

DOI:10.1007/BF00580969
PMID:2755778
Abstract

Intracellular recording techniques were used to examine and compare synaptic potentials evoked by stimulating pre- and postganglionic nerve trunks in cat bladder parasympathetic ganglia. In the 76 ganglion cells examined, two types of responses were recorded on stimulating the postganglionic nerve: an antidromic action potential (type PostNS1; n = 30) or a fast excitatory postsynaptic potential (f-EPSP; type PostNS2; n = 46) which resulted in an orthodromic-like action potential. In some of the cells exhibiting a PostNS1 response (n = 19), a fast depolarization was superimposed on the antidromic spike. This depolarization was due to the synaptic activation of nicotinic receptors. In many of the cells exhibiting either PostNS1 or PostNS2 responses, repetitive stimulation of the postganglionic nerve induced a slow hyperpolarization. Applying nicotinic (hexamethonium, 0.5-1 mM) receptor muscarinic (atropine, 1 microM), alpha-adrenergic (phentolamine, 1 microM) and purinergic (caffeine, 0.5-1 mM) receptor antagonists completely inhibited the tetanus-induced slow hyperpolarization in some cells (n = 5). In other cells (n = 15), a slow hyperpolarization persisted in the presence of these antagonists. These results indicate that stimulation of the postganglionic nerve trunk of cat bladder parasympathetic ganglia can elicit not only an antidromic action potential, but also synaptic potentials which are mediated by the activation of cholinergic (nicotinic and muscarinic), noradrenergic and purinergic receptors, as well as non-cholinergic, non-alpha-adrenergic and non-purinergic synaptic potential.

摘要

采用细胞内记录技术,研究并比较了刺激猫膀胱副交感神经节节前和节后神经干所诱发的突触电位。在所检查的76个神经节细胞中,刺激节后神经时记录到两种反应类型:逆向动作电位(PostNS1型;n = 30)或快速兴奋性突触后电位(f-EPSP;PostNS2型;n = 46),后者可导致类似顺向的动作电位。在一些表现出PostNS1反应的细胞(n = 19)中,快速去极化叠加在逆向峰电位上。这种去极化是由烟碱样受体的突触激活所致。在许多表现出PostNS1或PostNS2反应的细胞中,重复刺激节后神经会诱发缓慢超极化。应用烟碱样(六甲铵,0.5 - 1 mM)、毒蕈碱样(阿托品,1 μM)、α-肾上腺素能(酚妥拉明,1 μM)和嘌呤能(咖啡因,0.5 - 1 mM)受体拮抗剂,可完全抑制某些细胞(n = 5)中强直刺激诱导的缓慢超极化。在其他细胞(n = 15)中,在这些拮抗剂存在的情况下,缓慢超极化仍然存在。这些结果表明,刺激猫膀胱副交感神经节的节后神经干不仅可引发逆向动作电位,还可引发由胆碱能(烟碱样和毒蕈碱样)、去甲肾上腺素能和嘌呤能受体激活介导的突触电位,以及非胆碱能、非α-肾上腺素能和非嘌呤能突触电位。

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