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Endocannabinoid signaling at the periphery: 50 years after THC

机译:外周大麻素信号传导:THC后50年

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In 1964, the psychoactive ingredient of Cannabis sativa, Delta(9)-tetrahydrocannabinol (THC), was isolated. Nearly 30 years later the endogenous counterparts of THC, collectively termed endocannabinoids (eCBs), were discovered: N-arachidonoylethanolamine (anandamide) (AEA) in 1992 and 2-arachidonoylglycerol (2-AG) in 1995. Since then, considerable research has shed light on the impact of eCBs on human health and disease, identifying an ensemble of proteins that bind, synthesize, and degrade them and that together form the eCB system (ECS). eCBs control basic biological processes including cell choice between survival and death and progenitor/stem cell proliferation and differentiation. Unsurprisingly, in the past two decades eCBs have been recognized as key mediators of several aspects of human pathophysiology and thus have emerged to be among the most widespread and versatile signaling molecules ever discovered. Here some of the pioneers of this research field review the state of the art of critical eCB functions in peripheral organs. Our community effort is aimed at establishing consensus views on the relevance of the peripheral ECS for human health and disease pathogenesis, as well as highlighting emerging challenges and therapeutic hopes.
机译:1964年,分离了大麻的精神活性成分Delta(9)-四氢大麻酚(THC)。将近30年后,人们发现了THC的内源性对应物,统称为内源性大麻素(eCBs):1992年的N-花生四烯酸乙醇胺(anandamide)(AEA)和1995年的2-花生四烯酸甘油酯(2-AG)。此后,大量的研究工作流失了。着眼于eCB对人类健康和疾病的影响,确定结合,合成和降解它们并一起形成eCB系统(ECS)的蛋白质整体。 eCB控制着基本的生物学过程,包括在生存与死亡之间的细胞选择以及祖细胞/干细胞的增殖与分化。毫不奇怪,在过去的二十年中,eCB被公认为是人类病理生理学多个方面的关键介体,因此已成为迄今发现的最广泛和最通用的信号分子之一。在此,该研究领域的一些先驱者回顾了外周器官中关键eCB功能的技术水平。我们的社区工作旨在就外围ECS与人类健康和疾病发病机理的相关性建立共识,并强调新兴挑战和治疗希望。

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