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内源性大麻素系统。

The endocannabinoid system.

机构信息

Department of Biological Sciences, East Tennessee State University, Johnson City, TN 37614, U.S.A.

BioDiscovery Institute and Department of Biological Sciences, University of North Texas, Denton, TX 76203, U.S.A.

出版信息

Essays Biochem. 2020 Sep 23;64(3):485-499. doi: 10.1042/EBC20190086.

Abstract

Thirty years ago, the discovery of a cannabinoid (CB) receptor that interacts with the psychoactive compound in Cannabis led to the identification of anandamide, an endogenous receptor ligand or endocannabinoid. Research on endocannabinoids has since exploded, and additional receptors along with their lipid mediators and signaling pathways continue to be revealed. Specifically, in humans, the release of endocannabinoids from membrane lipids occurs on demand and the signaling process is rapidly attenuated by the breakdown of the ligand suggesting a tight regulation of the endocannabinoid system (ECS). Additionally, the varying distribution of CB receptors between the central nervous system and other tissues allows for the ECS to participate in a wide range of cognitive and physiological processes. Select plant-derived 'phyto'cannabinoids such as Δ-9-tetrahydrocannabinol (Δ9-THC) bind to the CB receptors and trigger the ECS, and in the case of Δ9-THC, while it has therapeutic value, can also produce detrimental effects. Current research is aimed at the identification of additional phytocannabinoids with minimal psychotropic effects with potential for therapeutic development. Although decades of research on the ECS and its components have expanded our understanding of the mechanisms and implications of endocannabinoid signaling in mammals, it continues to evolve. Here, we provide a brief overview of the ECS and its overlap with other related lipid-mediated signaling pathways.

摘要

三十年前,人们发现了一种大麻素(CB)受体,它与大麻中的精神活性化合物相互作用,从而鉴定出内源性受体配体或内源性大麻素。自此,对内源性大麻素的研究如雨后春笋般涌现,更多的受体及其脂质介质和信号通路不断被揭示。具体来说,在人类中,内源性大麻素从膜脂质中的释放是按需发生的,而配体的分解会迅速减弱信号过程,这表明内源性大麻素系统(ECS)受到严格的调控。此外,CB 受体在中枢神经系统和其他组织之间的分布不同,使得 ECS 能够参与广泛的认知和生理过程。某些植物源性“植物大麻素”,如 Δ-9-四氢大麻酚(Δ9-THC),与 CB 受体结合并触发 ECS,而在 Δ9-THC 的情况下,虽然它具有治疗价值,但也可能产生有害影响。目前的研究旨在确定具有最小精神活性作用且具有治疗开发潜力的其他植物大麻素。尽管数十年来对 ECS 及其成分的研究扩展了我们对哺乳动物内源性大麻素信号转导的机制和影响的理解,但它仍在不断发展。在这里,我们简要概述了 ECS 及其与其他相关脂质介导的信号通路的重叠。

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