Rapid hippocampal synaptic potentiation induced by ketamine metabolite (2R,6R)-hydroxynorketamine persistently primes synaptic plasticity

IF 6.6 1区 医学 Q1 NEUROSCIENCES
Kyle A. Brown, Musa I. Ajibola, Todd D. Gould
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引用次数: 0

Abstract

The pharmacologically active (R,S)-ketamine (ketamine) metabolite (2 R,6 R)-hydroxynorketamine (HNK) maintains ketamine’s preclinical antidepressant profile without adverse effects. While hypotheses have been proposed to explain how ketamine and its metabolites initiate their antidepressant-relevant effects, it remains unclear how sustained therapeutic actions arise following drug elimination. To distinguish the physiological mechanisms involved in the rapid from sustained actions of HNK, we utilized extracellular electrophysiology combined with pharmacology to develop an in vitro hippocampal slice incubation model that exhibited pharmacological fidelity to the 1) rapid synaptic potentiation induced by HNK at the Schaffer collateral-CA1 (SC-CA1) synapse during bath-application to slices collected from mice, and 2) maintenance of metaplastic (priming) activity that enhanced N-methyl-D-aspartate receptor (NMDAR) activation-dependent long-term potentiation (LTP) hours after in vivo dosing. We used this model to reveal novel mechanisms engaged in HNK’s temporally-sensitive antidepressant-relevant synaptic actions, finding that the induction of synaptic potentiation by HNK did not require NMDAR activity, but NMDAR activity was necessary to maintain synaptic priming. HNK required protein kinase A (PKA) activity to rapidly potentiate SC-CA1 neurotransmission to facilitate synaptic priming that persistently promoted LTP formation. HNK’s rapid actions were blocked by inhibitors of adenylyl cyclase 1 (AC1), but not an AC5 inhibitor. We conclude that HNK rapidly potentiates SC-CA1 synaptic efficacy, which then stimulates priming mechanisms that persistently favor plasticity. Targeting such priming mechanisms may be an effective antidepressant strategy, and our incubation model may aid in revealing novel pharmacological targets.

Abstract Image

氯胺酮代谢物(2R,6R)-羟基炔诺酮胺诱导的快速海马突触电位可持续激发突触可塑性。
药理活性(R,S)-氯胺酮(氯胺酮)代谢物(2r, 6r)-羟诺氯胺酮(HNK)维持氯胺酮的临床前抗抑郁特征,无不良反应。虽然已经提出了一些假说来解释氯胺酮及其代谢物如何启动其抗抑郁相关作用,但仍不清楚在药物消除后如何产生持续的治疗作用。为了区分HNK快速和持续作用所涉及的生理机制,我们利用细胞外电生理学结合药理学建立了一个体外海马切片孵育模型,该模型在药理学上与1)在小鼠切片中,HNK在Schaffer侧侧ca1 (SC-CA1)突触的快速突触增强表现出相似。2)维持化生(启动)活性,增强体内给药数小时后n-甲基-d -天冬氨酸受体(NMDAR)激活依赖性长期增强(LTP)。我们使用该模型揭示了HNK与抗抑郁药相关的突触作用的新机制,发现HNK诱导突触增强不需要NMDAR活性,但NMDAR活性是维持突触启动所必需的。HNK需要蛋白激酶A (PKA)活性来快速增强SC-CA1神经传递,促进突触启动,持续促进LTP的形成。HNK的快速作用可被腺苷酸环化酶1 (AC1)抑制剂阻断,但不能被AC5抑制剂阻断。我们得出的结论是,HNK迅速增强SC-CA1突触效能,从而刺激持续支持可塑性的启动机制。针对这样的启动机制可能是有效的抗抑郁策略,我们的孵化模型可能有助于揭示新的药理靶点。
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来源期刊
Neuropsychopharmacology
Neuropsychopharmacology 医学-精神病学
CiteScore
15.00
自引率
2.60%
发文量
240
审稿时长
2 months
期刊介绍: Neuropsychopharmacology is a reputable international scientific journal that serves as the official publication of the American College of Neuropsychopharmacology (ACNP). The journal's primary focus is on research that enhances our knowledge of the brain and behavior, with a particular emphasis on the molecular, cellular, physiological, and psychological aspects of substances that affect the central nervous system (CNS). It also aims to identify new molecular targets for the development of future drugs. The journal prioritizes original research reports, but it also welcomes mini-reviews and perspectives, which are often solicited by the editorial office. These types of articles provide valuable insights and syntheses of current research trends and future directions in the field of neuroscience and pharmacology.
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