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人运动皮层中GABAA受体亚型特异性增强抑制作用

GABAA receptor subtype specific enhancement of inhibition in human motor cortex.

作者信息

Di Lazzaro Vincenzo, Pilato Fabio, Dileone Michele, Ranieri Federico, Ricci Valerio, Profice Paolo, Bria Pietro, Tonali Pietro A, Ziemann Ulf

机构信息

Istituto di Neurologia, Università Cattolica, L.go A. Gemelli 8, 00168 Rome, Italy.

出版信息

J Physiol. 2006 Sep 15;575(Pt 3):721-6. doi: 10.1113/jphysiol.2006.114694. Epub 2006 Jun 29.

Abstract

Inhibition is of fundamental importance to regulate activity in cortical circuits. Inhibition is mediated through a diversity of different interneurones and gamma-aminobutyric acid A receptor (GABA(A)R) subtypes. Here we employed paired-pulse transcranial magnetic stimulation (TMS) to measure short interval intracortical inhibition (SICI), a GABA(A)R-mediated inhibition in human motor cortex, to address the question of which GABA(A)R subtype is responsible for this form of inhibition. It has been shown that classical benzodiazepines (diazepam and lorazepam) have a non-selective affinity profile at different alpha-subunit-bearing subtypes of the GABA(A)R while zolpidem has a 10-fold greater affinity to the alpha1-subunit-bearing GABA(A)R compared with those bearing the alpha2- or alpha3-subunit. We found that, in seven healthy subjects, a single oral dose of 20 mg of diazepam or 2.5 mg of lorazepam significantly increased SICI, whereas 10 mg of zolpidem did not change SICI. This dissociation occurred despite equal sedation by all three drugs, an alpha1-subunit GABA(A)R-mediated effect. The findings strongly suggest that SICI is not mediated by the alpha1-subunit-bearing subtype of the GABA(A)R but by those bearing either the alpha2- or alpha3-subunit. This study represents an attempt by means of TMS to identify GABA(A)R subtype-specific action at the systems level of human cortex, a highly relevant issue because the different alpha-subunit-bearing subtypes of the GABA(A)R are differently involved in benzodiazepine-mediated effects such as sedation, amnesia or anxiolysis, in developmental cortical plasticity, and in neurological disorders such as epilepsy.

摘要

抑制作用对于调节皮质回路的活动至关重要。抑制作用是通过多种不同的中间神经元和γ-氨基丁酸A受体(GABAA R)亚型介导的。在这里,我们采用配对脉冲经颅磁刺激(TMS)来测量短间隔皮质内抑制(SICI),这是一种在人类运动皮质中由GABAA R介导的抑制作用,以解决哪种GABAA R亚型负责这种抑制形式的问题。已经表明,经典苯二氮䓬类药物(地西泮和劳拉西泮)在不同含α亚基的GABAA R亚型上具有非选择性亲和力,而唑吡坦对含α1亚基的GABAA R的亲和力比对含α2或α3亚基的GABAA R高10倍。我们发现,在7名健康受试者中,单次口服20 mg地西泮或2.5 mg劳拉西泮可显著增加SICI,而10 mg唑吡坦则不会改变SICI。尽管这三种药物产生的镇静作用相同,这是一种由α1亚基GABAA R介导的效应,但仍出现了这种解离现象。这些发现强烈表明,SICI不是由含α1亚基的GABAA R亚型介导的,而是由含α2或α3亚基的GABAA R亚型介导的。本研究试图通过TMS在人类皮质的系统水平上识别GABAA R亚型特异性作用,这是一个高度相关的问题,因为不同含α亚基的GABAA R亚型在苯二氮䓬类药物介导的效应(如镇静、失忆或抗焦虑)、发育性皮质可塑性以及癫痫等神经系统疾病中发挥着不同的作用。

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