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大麻素与长期突触可塑性的相互作用:关于记忆形成和潜在机制的综述。

The interaction between cannabinoids and long-term synaptic plasticity: A survey on memory formation and underlying mechanisms.

机构信息

Department of Neuroscience,Faculty of Advanced Medical Sciences, Tabriz University of Medical Sciences, Tabriz, Iran.

Student Research Committee, Tabriz University of Medical Sciences, Tabriz, Iran.

出版信息

Cell Biochem Funct. 2024 Aug;42(6):e4100. doi: 10.1002/cbf.4100.

Abstract

Synaptic plasticity, including long-term potentiation (LTP) and long-term depression (LTD), is an essential phenomenon in memory formation as well as maintenance along with many other cognitive functions, such as those needed for coping with external stimuli. Synaptic plasticity consists of gradual changes in the biochemistry and morphology of pre- and postsynaptic neurons, particularly in the hippocampus. Consuming marijuana as a primary source of exocannabinoids immediately impairs attention and working memory-related tasks. Evidence regarding the effects of cannabinoids on LTP and memory is contradictory. While cannabinoids can affect a variety of specific cannabinoid receptors (CBRs) and nonspecific receptors throughout the body and brain, they exert miscellaneous systemic and local cerebral effects. Given the increasing use of cannabis, mainly among the young population, plus its potential adverse long-term effects on learning and memory processes, it could be a future global health challenge. Indeed, the impact of cannabinoids on memory is multifactorial and depends on the dosage, timing, formula, and route of consumption, plus the background complex interaction of the endocannabinoids system with other cerebral networks. Herein, we review how exogenously administrated organic cannabinoids, CBRs agonists or antagonists, and endocannabinoids can affect LTP and synaptic plasticity through various receptors in interaction with other cerebral pathways and primary neurotransmitters.

摘要

突触可塑性,包括长时程增强(LTP)和长时程抑制(LTD),是记忆形成以及许多其他认知功能(如应对外部刺激所需的功能)的维持所必需的现象。突触可塑性包括前突触和后突触神经元的生物化学和形态的逐渐变化,特别是在海马体中。大麻作为外源性大麻素的主要来源,会立即损害注意力和与工作记忆相关的任务。关于大麻素对 LTP 和记忆的影响的证据相互矛盾。虽然大麻素可以影响体内和大脑中各种特定的大麻素受体(CBR)和非特异性受体,但它们会产生各种全身和局部脑效应。鉴于大麻的使用越来越多,主要是在年轻人中,加上它对学习和记忆过程的潜在长期不利影响,它可能成为未来的全球健康挑战。事实上,大麻素对记忆的影响是多因素的,取决于剂量、时间、配方和消费途径,以及内源性大麻素系统与其他大脑网络的复杂相互作用背景。在此,我们综述了外源性有机大麻素、CBR 激动剂或拮抗剂以及内源性大麻素如何通过与其他大脑途径和主要神经递质相互作用的各种受体影响 LTP 和突触可塑性。

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