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Endocannabinoids at the synapse a decade after the dies mirabilis (29 March 2001): what we still do not know

机译:去世十年后突触中的内源性大麻素(2001年3月29日):我们仍然不知道的是

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摘要

Endogenous cannabinoids (endocannabinoids, eCBs) are ubiquitous regulators of synaptic transmission in the brain, mediating numerous forms of short- and long-term plasticity, and having strong influences on synapse formation and neurogenesis. Their roles as retrograde messengers that suppress both excitatory and inhibitory transmission are well-established. Yet, despite intensive investigation, many basic aspects of the eCB system are not understood. This brief review highlights recent advances, problems that remain unresolved, and avenues for future exploration. While 2-arachidonoylglycerol (2-AG) is probably the major eCB for intercellular CB1R-dependent signalling, anandamide (AEA) has come to the forefront in several novel contexts, both as a dual endovanilloid/endocannabinoid that regulates synaptic transmission acutely and as the source of a steady eCB tone in hippocampus. Complexities in the cellular processing of 2-AG are receiving renewed attention, as they are increasingly recognized as major determinants of how 2-AG affects cells. Long-standing fundamental issues such as the synthesis pathway for AEA and the molecular mechanism(s) underlying cellular uptake and release of eCBs remain problematical.
机译:内源性大麻素(内源性大麻素,eCBs)是大脑中突触传递的普遍调节因子,介导多种形式的短期和长期可塑性,并且对突触形成和神经发生具有强烈影响。它们作为既抑制兴奋性传递又抑制抑制性传递的逆向使者的作用是众所周知的。然而,尽管进行了深入的调查,eCB系统的许多基本方面仍未被理解。这篇简短的评论重点介绍了最新的进展,尚未解决的问题以及将来的探索途径。虽然2-花生四烯酸甘油酯(2-AG)可能是细胞间CB1R依赖性信号传导的主要eCB,但anandamide(AEA)在几种新颖的背景下都走在了前列,既是双重内生香脂/内源性大麻素,它能突触地调节突触传递,并作为海马中稳定的eCB音调的来源。 2-AG在细胞加工中的复杂性受到了越来越多的关注,因为它们越来越被认为是2-AG如何影响细胞的主要决定因素。长期存在的基本问题,例如AEA的合成途径以及细胞摄取和释放eCB的分子机制仍然是有问题的。

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