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The action of 5-hydroxytryptamine and possible 5-hydroxytryptamine antagonists on neurones of the guinea-pig submucous plexus.5-羟色胺及可能的5-羟色胺拮抗剂对豚鼠黏膜下神经丛神经元的作用。
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J Physiol. 1984 Jun;351:363-78. doi: 10.1113/jphysiol.1984.sp015250.
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Mediators of slow synaptic potentials in the myenteric plexus of the guinea-pig ileum.豚鼠回肠肌间神经丛中慢突触电位的介质
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从豚鼠黏膜下神经丛神经元记录到的缓慢兴奋性突触电位。

Slow excitatory synaptic potentials recorded from neurones of guinea-pig submucous plexus.

作者信息

Surprenant A

出版信息

J Physiol. 1984 Jun;351:343-61. doi: 10.1113/jphysiol.1984.sp015249.

DOI:10.1113/jphysiol.1984.sp015249
PMID:6205143
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1193121/
Abstract

Intracellular recordings made from neurones of guinea-pig submucous plexus revealed three types of synaptic input: cholinergic excitatory synaptic potentials (fast e.p.s.p.s) of 50-80 ms duration, inhibitory synaptic potentials (i.p.s.p.s) of 1 s duration, and non-cholinergic, non-adrenergic slow e.p.s.p.s which lasted for 15-20 s. A single stimulus was sufficient to elicit the slow e.p.s.p. in all neurones in which this synaptic input was present. Slow e.p.s.p.s were recorded in those neurones which also displayed i.p.s.p.s. Both the i.p.s.p. and the slow e.p.s.p. appeared in an all-or-none fashion and were not affected by alterations in the stimulus strength. The inhibitory as well as the slow excitatory synaptic potentials reversed close to the K+ equilibrium potential, indicating that the i.p.s.p. is due to an activation of K+ conductance while the slow e.p.s.p. is due to its inactivation. Evidence is presented which suggests the slow e.p.s.p. may be generated at a synapse located some distance from the soma, presumably at a dendritic location. Only those cells which showed slow e.p.s.p.s responded to substance P with a depolarization which mimicked the slow e.p.s.p.

摘要

对豚鼠黏膜下神经丛神经元进行的细胞内记录显示出三种类型的突触输入

持续时间为50 - 80毫秒的胆碱能兴奋性突触电位(快速兴奋性突触后电位)、持续时间为1秒的抑制性突触电位以及持续15 - 20秒的非胆碱能、非肾上腺素能缓慢兴奋性突触后电位。单个刺激足以在所有存在这种突触输入的神经元中引发缓慢兴奋性突触后电位。在那些也显示抑制性突触后电位的神经元中记录到了缓慢兴奋性突触后电位。抑制性突触后电位和缓慢兴奋性突触后电位均以全或无的方式出现,且不受刺激强度改变的影响。抑制性突触后电位以及缓慢兴奋性突触后电位在接近钾离子平衡电位时反转,这表明抑制性突触后电位是由于钾离子电导的激活,而缓慢兴奋性突触后电位是由于其失活。有证据表明,缓慢兴奋性突触后电位可能在距离胞体一定距离的突触处产生,推测是在树突部位。只有那些显示缓慢兴奋性突触后电位的细胞对P物质产生模拟缓慢兴奋性突触后电位的去极化反应。