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在脑片中采用细胞内记录法研究乙醇对腹侧被盖区多巴胺能神经元的影响。

The effects of ethanol on dopaminergic neurons of the ventral tegmental area studied with intracellular recording in brain slices.

作者信息

Brodie M S, Appel S B

机构信息

Department of Physiology and Biophysics, University of Illinois at Chicago, College of Medicine, 60612-7342, USA.

出版信息

Alcohol Clin Exp Res. 1998 Feb;22(1):236-44.

PMID:9514313
Abstract

Dopaminergic neurons in the ventral tegmental area of Tsai (VTA) have been implicated in the mediation of the rewarding effects of ethanol and many other drugs of abuse. Our previous extracellular studies in brain slices have demonstrated that ethanol increases the firing rate of dopaminergic neurons in the VTA. In the present intracellular study, ethanol (40-160 mM) increased the spontaneous firing rate of most (77%) VTA neurons. In addition, most (75%) VTA neurons were depolarized by ethanol. Ethanol also changed the shape of the spontaneous action potential in VTA neurons, reducing the amplitude of the spike after-hyperpolarization (in 74% of neurons) and also reducing the amplitude of the depolarizing phase of the action potential (in 86% of neurons tested). Furthermore, analysis of Voltage/Current curves in the presence and absence of ethanol showed that ethanol had little effect on the resistance of the cell membrane at membrane potentials near rest, but enhanced the time-dependent inward rectification activated at more hyperpolarized membrane potentials (Ih). This intracellular study identifies several electrophysiological effects of ethanol that may underlie the ethanol-induced excitation of VTA neurons and, therefore, may be important for the rewarding effects of ethanol.

摘要

蔡氏腹侧被盖区(VTA)的多巴胺能神经元与乙醇及许多其他滥用药物的奖赏效应介导有关。我们之前在脑片上进行的细胞外研究表明,乙醇可提高VTA中多巴胺能神经元的放电频率。在目前的细胞内研究中,乙醇(40 - 160 mM)提高了大多数(77%)VTA神经元的自发放电频率。此外,大多数(75%)VTA神经元被乙醇去极化。乙醇还改变了VTA神经元自发放电动作电位的形状,降低了动作电位超极化后电位的幅度(74%的神经元),同时也降低了动作电位去极化相的幅度(86%的受试神经元)。此外,对有无乙醇存在时的电压/电流曲线分析表明,乙醇在静息膜电位附近对细胞膜电阻影响不大,但增强了在更超极化膜电位激活的时间依赖性内向整流(Ih)。这项细胞内研究确定了乙醇的几种电生理效应,这些效应可能是乙醇诱导VTA神经元兴奋的基础,因此可能对乙醇的奖赏效应很重要。

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