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应激整合的神经通路:与酒精滥用的相关性。

Neural pathways of stress integration: relevance to alcohol abuse.

作者信息

Herman James P

机构信息

Department of Psychiatry and Behavioral Neuroscience, University of Cincinnati, Cincinnati, OH, USA.

出版信息

Alcohol Res. 2012;34(4):441-7.

Abstract

Stress is a critical component in the development, maintenance, and reinstatement of addictive behaviors, including alcohol use. This article reviews the current state of the literature on the brain's stress response, focusing on the hypothalamic-pituitary- adrenal (HPA) axis. Stress responses can occur as a reaction to physiological (or systemic) challenge or threat; signals from multiple parts of the brain send input to the paraventricular nucleus (PVN) within the hypothalamus. However, responses also occur to stressors that predict potential threats (psychogenic stressors). Psychogenic responses are mediated by a series of nerve cell connections in the limbic-PVN pathway, with amygdalar and infralimbic cortex circuits signaling excitation and prelimbic cortex and hippocampal neurons signaling stress inhibition. Limbic-PVN connections are relayed by predominantly GABAergic neurons in regions such as the bed nucleus of the stria terminalis and preoptic area. Chronic stress affects the structure and function of limbic stress circuitry and results in enhanced PVN excitability, although the exact mechanism is unknown. Of importance, acute and chronic alcohol exposure are known to affect both systemic and psychogenic stress pathways and may be linked to stress dysregulation by precipitating chronic stress-like changes in amygdalar and prefrontal components of the limbic stress control network.

摘要

压力是成瘾行为(包括饮酒)的发展、维持和复发中的一个关键因素。本文综述了关于大脑应激反应的文献现状,重点关注下丘脑 - 垂体 - 肾上腺(HPA)轴。应激反应可作为对生理(或全身性)挑战或威胁的反应而发生;来自大脑多个部位的信号向下丘脑内的室旁核(PVN)发送输入信息。然而,对预测潜在威胁的应激源(心理性应激源)也会产生反应。心理性反应由边缘 - PVN 通路中的一系列神经细胞连接介导,杏仁核和边缘下皮质回路发出兴奋信号,而前额叶皮质和海马神经元发出应激抑制信号。边缘 - PVN 连接由终纹床核和视前区等区域中主要的γ - 氨基丁酸能神经元中继传递。慢性应激会影响边缘应激回路的结构和功能,并导致 PVN 兴奋性增强,尽管确切机制尚不清楚。重要的是,已知急性和慢性酒精暴露会影响全身性和心理性应激途径,并且可能通过在边缘应激控制网络的杏仁核和前额叶成分中引发类似慢性应激的变化而与应激调节失调有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a029/3860392/59543a6fb787/arcr-34-4-441f1.jpg

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