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从植物大麻素到大麻素受体和内源性大麻素:通过复杂的药理学发挥多效性生理和病理作用。

From Phytocannabinoids to Cannabinoid Receptors and Endocannabinoids: Pleiotropic Physiological and Pathological Roles Through Complex Pharmacology.

机构信息

Endocannabinoid Research Group, Institute of Biomolecular Chemistry, Consiglio Nazionale delle Ricerche, Comprensorio Olivetti, Pozzuoli, Italy.

出版信息

Physiol Rev. 2016 Oct;96(4):1593-659. doi: 10.1152/physrev.00002.2016.

Abstract

Apart from having been used and misused for at least four millennia for, among others, recreational and medicinal purposes, the cannabis plant and its most peculiar chemical components, the plant cannabinoids (phytocannabinoids), have the merit to have led humanity to discover one of the most intriguing and pleiotropic endogenous signaling systems, the endocannabinoid system (ECS). This review article aims to describe and critically discuss, in the most comprehensive possible manner, the multifaceted aspects of 1) the pharmacology and potential impact on mammalian physiology of all major phytocannabinoids, and not only of the most famous one Δ(9)-tetrahydrocannabinol, and 2) the adaptive pro-homeostatic physiological, or maladaptive pathological, roles of the ECS in mammalian cells, tissues, and organs. In doing so, we have respected the chronological order of the milestones of the millennial route from medicinal/recreational cannabis to the ECS and beyond, as it is now clear that some of the early steps in this long path, which were originally neglected, are becoming important again. The emerging picture is rather complex, but still supports the belief that more important discoveries on human physiology, and new therapies, might come in the future from new knowledge in this field.

摘要

除了至少四千年来被用于娱乐和药用等目的,被滥用之外,大麻植物及其最奇特的化学成分,植物大麻素(植物大麻素),还有一个优点,就是使人类发现了最引人入胜和多效性的内源性信号系统之一,即内源性大麻素系统(ECS)。这篇综述文章旨在以最全面的方式描述和批判性地讨论 1)所有主要植物大麻素的药理学和对哺乳动物生理学的潜在影响,而不仅仅是最著名的Δ(9)-四氢大麻酚,以及 2)ECS 在哺乳动物细胞、组织和器官中的适应性原稳态生理或失调病理作用。在这样做的过程中,我们尊重了从药用/娱乐性大麻到 ECS 及其以外的千年路线的里程碑的时间顺序,因为现在很明显,这条漫长道路上的一些早期步骤,最初被忽视了,现在又变得重要了。新兴的图景相当复杂,但仍然支持这样一种信念,即未来在该领域的新知识可能会为人类生理学的更多重要发现和新疗法带来新的发现。

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