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大麻:动物和人类的药理学与毒理学

Cannabis: pharmacology and toxicology in animals and humans.

作者信息

Adams I B, Martin B R

机构信息

Medical College of Virginia/Virginia Commonwealth University, Richmond 23298, USA.

出版信息

Addiction. 1996 Nov;91(11):1585-614.

PMID:8972919
Abstract

Cannabis is one of the most widely used drugs throughout the world. The psychoactive constituent of cannabis, delta 9-tetrahydrocannabinol (delta 9-THC), produces a myriad of pharmacological effects in animals and humans. For many decades, the mechanism of action of cannabinoids, compounds which are structurally similar to delta 9-THC, was unknown. Tremendous progress has been made recently in characterizing cannabinoid receptors both centrally and peripherally and in studying the role of second messenger systems at the cellular level. Furthermore, an endogenous ligand, anandamide, for the cannabinoid receptor has been identified. Anandamide is a fatty-acid derived compound that possesses pharmacological properties similar to delta 9-THC. The production of complex behavioral events by cannabinoids is probably mediated by specific cannabinoid receptors and interactions with other neurochemical systems. Cannabis also has great therapeutic potential and has been used for centuries for medicinal purposes. However, cannabinoid-derived drugs on the market today lack specificity and produce many unpleasant side effects, thus limiting therapeutic usefulness. The advent of highly potent analogs and a specific antagonist may make possible the development of compounds that lack undesirable side effects. The advancements in the field of cannabinoid pharmacology should facilitate our understanding of the physiological role of endogenous cannabinoids.

摘要

大麻是全世界使用最广泛的毒品之一。大麻的精神活性成分Δ9-四氢大麻酚(Δ9-THC)在动物和人类身上产生多种药理作用。几十年来,与Δ9-THC结构相似的大麻素类化合物的作用机制一直不明。最近在中枢和外周表征大麻素受体以及在细胞水平研究第二信使系统的作用方面取得了巨大进展。此外,已鉴定出一种大麻素受体的内源性配体——花生四烯乙醇胺。花生四烯乙醇胺是一种脂肪酸衍生化合物,具有与Δ9-THC相似的药理特性。大麻素产生复杂行为事件可能是由特定的大麻素受体以及与其他神经化学系统的相互作用介导的。大麻还具有巨大的治疗潜力,并且已经被用于医疗目的达数百年之久。然而,如今市面上的大麻素衍生药物缺乏特异性,会产生许多不良副作用,从而限制了其治疗用途。高效类似物和特异性拮抗剂的出现可能使开发无不良副作用的化合物成为可能。大麻素药理学领域的进展应有助于我们理解内源性大麻素的生理作用。

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