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微培养大鼠交感神经元中的突触功能。I. 去甲肾上腺素和乙酰胆碱的分泌。

Synaptic functions in rat sympathetic neurons in microcultures. I. Secretion of norepinephrine and acetylcholine.

作者信息

Furshpan E J, Landis S C, Matsumoto S G, Potter D D

出版信息

J Neurosci. 1986 Apr;6(4):1061-79. doi: 10.1523/JNEUROSCI.06-04-01061.1986.

Abstract

This is the first of a series of four papers that describes the use of a sensitive "microculture" procedure for examining the neurotransmitter profile of a neuron by assaying the transmitter(s) it releases. Sympathetic principal neurons isolated from the superior cervical ganglia of neonatal or adult rats were grown for 10 d to several months on small islands of cardiac myocytes (island diameter, ca. 0.5 mm). To assay transmitter status a neuron and a myocyte in the same microculture were impaled with microelectrodes, the neuron was stimulated and the pharmacology of the effect(s) on the group of electrically coupled myocytes, and on the neuron itself, was investigated. Because the growing axonal processes were confined to the island, the innervation of the myocytes became dense; transmission from neuron to myocytes occurred reliably and was often intense. Most experiments were done on islands containing only a single neuron so that the observed effect(s) on the myocytes could be confidently assigned to that neuron. After the physiological assay, the fine structure or cytochemistry of the neuron was often examined. With single-neuron microcultures the physiology and anatomy of the neuron, including the fine structure of its synaptic endings and varicosities, could be correlated unambiguously. During the course of this work, we have observed five pharmacologically distinct effects exerted on the myocytes by either neonate- or adult-derived neurons. Three of these effects, one exerted at least in large part by adenosine and the others by agents still under study (one appears to be 5-HT), are described by Furshpan et al. (1986), Matsumoto et al. (in press), and D. Sah and S. G. Matsumoto (unpublished observations). This paper is concerned with evidence for secretion by these neurons of norepinephrine (NE) and acetylcholine (ACh). The physiological effects of the secretion of these two substances onto the myocytes (excitation and inhibition, respectively) were generally similar to those reported in vivo. The minimal latencies of the responses were short, probably due to the high density of innervation. ACh secreted by a neuron onto itself, at autapses, evoked fast nicotinic EPSPs. We have not detected autaptic effects attributable to the secretion of NE. A minority of the neurons were detectably only adrenergic or only cholinergic. The incidence of these transmitter states was strongly dependent on culture age and culture conditions; in a heterogeneous group of about 300 reasonably well-characterized neurons about 17% (12% of neonate-derived) were apparently purely adrenergic and about 10% (13% of neonate-derived) were apparently purely cholinergic.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

这是系列四篇论文中的第一篇,描述了一种灵敏的“微培养”程序的应用,该程序通过检测神经元释放的神经递质来检查其神经递质谱。从新生或成年大鼠颈上神经节分离出的交感神经主神经元,在心肌细胞小岛上生长10天至数月(小岛直径约0.5毫米)。为了检测递质状态,用微电极刺入同一微培养中的一个神经元和一个心肌细胞,刺激神经元,并研究其对电耦合心肌细胞群以及神经元自身的效应的药理学特性。由于生长的轴突过程局限于小岛,心肌细胞的神经支配变得密集;从神经元到心肌细胞的传递可靠且常常强烈。大多数实验在仅含有单个神经元的小岛上进行,以便可以确定地将观察到的对心肌细胞的效应归因于该神经元。生理检测后,常常检查神经元的精细结构或细胞化学。通过单神经元微培养,可以明确地将神经元的生理学和解剖学,包括其突触末梢和曲张体的精细结构联系起来。在这项工作过程中,我们观察到新生或成年来源的神经元对心肌细胞施加的五种药理学上不同的效应。其中三种效应,一种至少在很大程度上由腺苷施加,其他效应由仍在研究的物质施加(一种似乎是5-羟色胺),Furshpan等人(1986年)、Matsumoto等人(即将发表)以及D. Sah和S. G. Matsumoto(未发表的观察结果)对此进行了描述。本文关注这些神经元分泌去甲肾上腺素(NE)和乙酰胆碱(ACh)的证据。这两种物质分泌到心肌细胞上的生理效应(分别为兴奋和抑制)通常与体内报道的相似。反应的最小潜伏期很短,可能是由于神经支配密度高。神经元在自身突触处分泌到自身的ACh诱发快速烟碱型兴奋性突触后电位。我们未检测到可归因于NE分泌的自突触效应。少数神经元仅可检测到为肾上腺素能或仅为胆碱能。这些递质状态的发生率强烈依赖于培养年龄和培养条件;在一组约300个特征合理明确的异质神经元中,约17%(新生来源的为12%)显然是纯肾上腺素能的,约10%(新生来源的为13%)显然是纯胆碱能的。(摘要截短至400字)

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