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长期乙醇暴露和戒断后腺苷受体信号转导的神经适应。

Neuroadaptations in adenosine receptor signaling following long-term ethanol exposure and withdrawal.

机构信息

Department of Psychology, Spinal Cord and Brain Injury Research Center, University of Kentucky, Lexington, USA.

出版信息

Alcohol Clin Exp Res. 2012 Jan;36(1):4-13. doi: 10.1111/j.1530-0277.2011.01586.x. Epub 2011 Jul 18.

Abstract

Ethanol affects the function of neurotransmitter systems, resulting in neuroadaptations that alter neural excitability. Adenosine is one such receptor system that is changed by ethanol exposure. The current review is focused on the A(1) and the A(2A) receptor subtypes in the context of ethanol-related neuroadaptations and ethanol withdrawal because these subtypes (i) are activated by basal levels of adenosine, (ii) have been most well-studied for their role in neuroprotection and ethanol-related phenomena, and (iii) are the primary site of action for caffeine in the brain, a substance commonly ingested with ethanol. It is clear that alterations in adenosinergic signaling mediate many of the effects of acute ethanol administration, particularly with regard to motor function and sedation. Further, prolonged ethanol exposure has been shown to produce adaptations in the cell surface expression or function of both A(1) and the A(2A) receptor subtypes, effects that likely promote neuronal excitability during ethanol withdrawal. As a whole, these findings demonstrate a significant role for ethanol-induced adaptations in adenosine receptor signaling that likely influence neuronal function, viability, and relapse to ethanol intake following abstinence.

摘要

乙醇会影响神经递质系统的功能,导致改变神经兴奋性的神经适应性变化。腺苷就是这样一种受乙醇暴露影响的受体系统。目前的综述主要关注与乙醇相关的神经适应性变化和乙醇戒断过程中的 A1 和 A2A 受体亚型,因为这些亚型:(i)受基础水平的腺苷激活;(ii)在神经保护和乙醇相关现象中的作用已得到最充分的研究;(iii)是咖啡因在大脑中的主要作用部位,咖啡因是一种与乙醇一起摄入的常见物质。很明显,腺苷能信号的改变介导了急性乙醇给药的许多作用,特别是与运动功能和镇静有关。此外,长期乙醇暴露已被证明会导致 A1 和 A2A 受体亚型的细胞表面表达或功能发生适应性改变,这些效应可能会在乙醇戒断期间促进神经元兴奋性。总的来说,这些发现表明,乙醇诱导的腺苷受体信号适应性变化在很大程度上影响神经元功能、存活以及戒断后重新摄入乙醇的可能性。

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