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多巴胺对兔交感神经节中慢突触后电位的调制作用

Modulation of slow postsynaptic potentials by dopamine, in rabbit sympathetic ganglion.

作者信息

Ashe J H, Libet B

出版信息

Brain Res. 1981 Jul 27;217(1):93-106. doi: 10.1016/0006-8993(81)90187-6.

Abstract

(1) Temporary exposure of rabbit's superior cervical ganglion (SCG) to dopamine (DA), in the presence of an inhibitor of catechol-o-methyltransferase (COMT) is consistently followed by a potentiation of the slow (s)-EPSP and s-IPSP, lasting for some hours. The fast (f)-EPSP is not significantly increased, but it is better maintained than in control ganglia. (2) Exposure to the COMT-inhibitor U-0521 alone induces less but substantial potentiations of both s-PSPs. This effect is explained as due to protection of DA released intraganglionically at rest. (3) This evidence suggests that COMT may significantly limit the access of catecholamines to postsynaptic receptors, for at least certain types of neuron-to-neuron synaptic actions. (4) The potentiation of both s-PSPs, whether induced by DA in the presence of U-0521 or by U-0521 alone, is depressed by DA-1 antagonists that have been found to depress DA-stimulation of adenyl cyclase in rabbit SCG; these are spiroperidol, butaclamol and, to a lesser extent, bromocriptine. The specific 'DA-2' antagonists metoclopramide and sulpiride, and the alpha-adrenergic antagonist dihydroergotamine, did not depress potentiation. (5) Potentiation of s-EPSP is viewed as identical in nature to the previously discovered DA-modulatory enhancement of direct muscarinic depolarizing actions (by acetylcholine or its agonists). Potentiation of s-IPSP may be due to a similar DA-modulation of other muscarinic response(s) involved in mediating the s-IPSP. The consistency and comparative ease with which these DA-modulatory effects can be induced, under presently described experimental conditions, should facilitate future study of this mode of synaptic action.

摘要

(1) 在儿茶酚-O-甲基转移酶(COMT)抑制剂存在的情况下,将兔颈上神经节(SCG)短暂暴露于多巴胺(DA)后,慢(s)-兴奋性突触后电位(EPSP)和慢抑制性突触后电位(IPSP)会持续增强数小时。快(f)-EPSP没有显著增加,但与对照神经节相比,其维持得更好。(2) 单独暴露于COMT抑制剂U-0521也会诱导两种慢突触后电位(s-PSP)出现较小但显著的增强。这种效应被解释为是由于对静息时神经节内释放的DA起到了保护作用。(3) 这一证据表明,对于至少某些类型的神经元间突触作用,COMT可能会显著限制儿茶酚胺与突触后受体的结合。(4) 无论是在U-0521存在的情况下由DA诱导,还是单独由U-0521诱导,两种慢突触后电位(s-PSP)的增强都会被DA-1拮抗剂所抑制,这些拮抗剂已被发现可抑制兔SCG中DA对腺苷酸环化酶的刺激;它们是螺哌啶醇、布他拉莫,以及程度较轻的溴隐亭。特异性的“DA-2”拮抗剂甲氧氯普胺和舒必利,以及α-肾上腺素能拮抗剂双氢麦角胺,均未抑制这种增强作用。(5) 慢兴奋性突触后电位(s-EPSP)的增强在本质上被认为与先前发现的DA对直接毒蕈碱去极化作用(由乙酰胆碱或其激动剂引起)的调节增强相同。慢抑制性突触后电位(s-IPSP)的增强可能是由于DA对介导s-IPSP的其他毒蕈碱反应进行了类似的调节。在目前所描述的实验条件下,这些DA调节效应能够被诱导产生的一致性和相对容易程度,将有助于未来对这种突触作用模式的研究。

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