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其他神经递质对氨基酸神经递质作用的调节:一些例子。

Modulation of amino acid neurotransmitter actions by other neurotransmitters: some examples.

作者信息

Marshall K C, Xiong H G

机构信息

Department of Physiology, Faculty of Medicine, University of Ottawa, Ont., Canada.

出版信息

Can J Physiol Pharmacol. 1991 Jul;69(7):1115-22. doi: 10.1139/y91-163.

Abstract

Developments in the field of central neurotransmission indicate that amino acids serve as important and widespread transmitters throughout the central nervous system. There are increasing indications from recent experimental studies that several of the other central neurotransmitters may exert potent effects on central neurons by modulating the actions of amino acids. Noradrenaline and serotonin have received particular attention as potential modulators, and a wide variety of actions has been reported for them. Modulatory actions have been reported at both pre- and post-synaptic levels, including both short- and long-term effects and facilitation or inhibition of amino acid actions. Selectivity has been found both for specific receptor subtypes of the neuromodulator and for specific effects of amino acids. Examples of such selectivity are modification of actions of an amino acid with little effect on spontaneous activity or membrane properties of the target cell, or in comparison to the actions of other neurotransmitters, or even other selective amino acid analogs. Modulatory actions on amino acids have also been reported for several other neurotransmitters including acetylcholine and various peptides. Recent studies of angiotensin II demonstrate that when iontophoretically applied, it can potently and selectively block the depolarizing action of glutamate on locus coeruleus neurons. It is possible that physiological influences of these various transmitter substances are expressed through modification of amino acid actions, rather than through direct effects on central neurons.

摘要

中枢神经传递领域的进展表明,氨基酸在整个中枢神经系统中作为重要且广泛存在的递质发挥作用。近期实验研究越来越多地表明,其他几种中枢神经递质可能通过调节氨基酸的作用对中枢神经元产生强大影响。去甲肾上腺素和5-羟色胺作为潜在的调节剂受到了特别关注,并且已经报道了它们具有多种作用。在突触前和突触后水平均报道了调节作用,包括短期和长期效应以及对氨基酸作用的促进或抑制。已发现对神经调质的特定受体亚型以及氨基酸的特定效应均具有选择性。这种选择性的例子包括对氨基酸作用的修饰,而对靶细胞的自发活动或膜特性影响很小,或者与其他神经递质甚至其他选择性氨基酸类似物的作用相比。还报道了包括乙酰胆碱和各种肽在内的其他几种神经递质对氨基酸的调节作用。最近对血管紧张素II的研究表明,当通过离子电泳施加时,它可以有效且选择性地阻断谷氨酸对蓝斑神经元的去极化作用。这些各种递质物质的生理影响可能是通过修饰氨基酸的作用来表达,而不是通过对中枢神经元的直接作用。

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