环境背景对灭绝后嗜酒复发的有力影响。

Patricia H Janak, Nadia Chaudhri
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引用次数: 26

摘要

已经经历过酒精药理作用的环境成为戒酒者复发的有力诱因。为研究环境背景对寻求酒精行为复发的影响而开发的动物模型表明,在不同的环境中寻求酒精行为消失后,寻求酒精行为会在暴露于与酒精相关的环境中重新出现。因此,酒精条件反射和消退学习发生的环境可能是是否观察到寻求酒精行为的关键决定因素。这篇综述总结了临床前研究迄今为止检查酒精环境的作用在酒精的熄灭反应恢复。行为研究已经阐明了诱发情境依赖性复发的重要因素,并揭示了在不同情境下由离散酒精线索驱动的寻酒行为之间的新相互作用。神经药理学研究为多巴胺能系统在情境依赖性恢复中的作用提供了大量证据,并越来越多地支持阿片能机制。已经确定了几个关键的边缘脑区域在酒精寻求的调节中,支持了一个拟议的神经回路,包括海马、伏隔核、基底外侧杏仁核、外侧下丘脑和室旁丘脑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The Potent Effect of Environmental Context on Relapse to Alcohol-Seeking After Extinction.

The Potent Effect of Environmental Context on Relapse to Alcohol-Seeking After Extinction.

The Potent Effect of Environmental Context on Relapse to Alcohol-Seeking After Extinction.

The Potent Effect of Environmental Context on Relapse to Alcohol-Seeking After Extinction.

Environments in which the pharmacological effects of alcohol have been experienced become potent triggers for relapse in abstinent humans. Animal models developed to study the effect of environmental contexts on relapse to alcohol-seeking behavior demonstrate that alcohol-seeking is renewed by exposure to an alcohol-associated context, following the extinction of alcohol-seeking in a different context. Hence, contexts in which alcohol conditioning and extinction learning occur can be critical determinants for whether or not alcohol-seeking behavior is observed. This review summarizes preclinical research to date examining the role of alcohol contexts on the reinstatement of extinguished responding for alcohol. Behavioral studies have elucidated factors that are important for eliciting context-dependent relapse, and have uncovered novel interactions between alcohol-seeking driven by discrete alcohol cues in different contexts. Neuropharmacological studies provide substantial evidence for a role of dopaminergic systems in context-dependent reinstatement, and growing support for opioidergic mechanisms as well. Several key limbic brain regions have been identified in the modulation of alcohol-seeking by context, supporting a proposed neural circuit that includes the hippocampus, nucleus accumbens, basolateral amygdala, lateral hypothalamus, and the paraventricular thalamus.

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