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Antidepressant effects of ketamine and the roles of AMPA glutamate receptors and other mechanisms beyond NMDA receptor antagonism

机译:氯胺酮的抗抑郁作用和AMPA谷氨酸受体的作用以及除NMDA受体拮抗作用外的其他机制

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摘要

The molecular mechanisms underlying major depressive disorder remain poorly understood, and current antidepressant treatments have many shortcomings. The recent discovery that a single intravenous infusion of ketamine at a subanesthetic dose had robust, rapid and sustained antidepressant effects in individuals with treatment-resistant depression inspired tremendous interest in investigating the molecular mechanisms mediating ketamine’s clinical efficacy as well as increased efforts to identify new targets for antidepressant action. We review the clinical utility of ketamine and recent insights into its mechanism of action as an antidepressant, including the roles of N-methyl-d-aspartate receptor inhibition, α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid receptor upregulation, activation of downstream synaptogenic signalling pathways and the production of an active ketamine metabolite, hydroxynorketamine. Emerging knowledge of the molecular mechanisms underlying both ketamine’s positive therapeutic and detrimental side effects will aid the development of a new generation of much-needed superior antidepressant agents.
机译:尚不清楚主要抑郁症的潜在分子机制,目前的抗抑郁治疗方法有许多缺点。最近的发现,以亚麻醉剂量单次静脉内注射氯胺酮对耐治疗性抑郁症患者具有强大,快速和持续的抗抑郁作用,这激发了人们对研究介导氯胺酮临床疗效的分子机制以及确定新靶点的努力的兴趣抗抑郁作用。我们综述了氯胺酮的临床效用及其作为抗抑郁药的作用机理的最新见解,包括N-甲基-d-天冬氨酸受体抑制作用,α-氨基-3-羟基-5-甲基-5-异-4-唑基丙酸受体的作用上调,下游突触信号通路的激活以及活性氯胺酮代谢物羟基降氧甲胺的产生。关于氯胺酮的积极治疗和有害副作用的分子机制的新兴知识将有助于开发新一代急需的高级抗抑郁药。

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