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致幻剂对基因表达的影响。

The Effects of Hallucinogens on Gene Expression.

作者信息

Martin David A, Nichols Charles D

机构信息

Department of Pharmacology and Experimental Therapeutics, LSU Health Sciences Center, New Orleans, LA, 70112, USA.

出版信息

Curr Top Behav Neurosci. 2018;36:137-158. doi: 10.1007/7854_2017_479.

Abstract

The classic serotonergic hallucinogens, or psychedelics, have the ability to profoundly alter perception and behavior. These can include visual distortions, hallucinations, detachment from reality, and mystical experiences. Some psychedelics, like LSD, are able to produce these effects with remarkably low doses of drug. Others, like psilocybin, have recently been demonstrated to have significant clinical efficacy in the treatment of depression, anxiety, and addiction that persist for at least several months after only a single therapeutic session. How does this occur? Much work has recently been published from imaging studies showing that psychedelics alter brain network connectivity. They facilitate a disintegration of the default mode network, producing a hyperconnectivity between brain regions that allow centers that do not normally communicate with each other to do so. The immediate and acute effects on both behaviors and network connectivity are likely mediated by effector pathways downstream of serotonin 5-HT2A receptor activation. These acute molecular processes also influence gene expression changes, which likely influence synaptic plasticity and facilitate more long-term changes in brain neurochemistry ultimately underlying the therapeutic efficacy of a single administration to achieve long-lasting effects. In this review, we summarize what is currently known about the molecular genetic responses to psychedelics within the brain and discuss how gene expression changes may contribute to altered cellular physiology and behaviors.

摘要

经典的血清素能致幻剂,即迷幻药,有能力深刻改变感知和行为。这些改变可包括视觉扭曲、幻觉、脱离现实以及神秘体验。一些迷幻药,如麦角酸二乙酰胺(LSD),只需极低剂量就能产生这些效果。其他迷幻药,如裸盖菇素,最近已被证明在治疗抑郁症、焦虑症和成瘾方面具有显著的临床疗效,且在仅一次治疗后,这种疗效至少能持续数月。这是如何发生的呢?最近有许多成像研究发表的成果表明,迷幻药会改变大脑网络的连通性。它们促使默认模式网络解体,在大脑区域之间产生超连通性,使通常不相互交流的中枢能够相互交流。对行为和网络连通性的即时和急性影响可能是由血清素5-HT2A受体激活下游的效应通路介导的。这些急性分子过程也会影响基因表达变化,而基因表达变化可能会影响突触可塑性,并促进大脑神经化学发生更长期的变化,最终构成单次给药实现持久疗效的治疗效果的基础。在这篇综述中,我们总结了目前已知的大脑内对迷幻药的分子遗传反应,并讨论了基因表达变化可能如何导致细胞生理学和行为的改变。

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