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Functional diversity on synaptic plasticity mediated by endocannabinoids

机译:内源性大麻素介导的突触可塑性的功能多样性

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摘要

Endocannabinoids (eCBs) act as modulators of synaptic transmission through activation of a number of receptors, including, but not limited to, cannabinoid receptor 1 (CB1). eCBs share CB1 receptors as a common target with Δ ~9-tetrahydrocannabinol (THC), the main psychoactive ingredient in marijuana. Although THC has been used for recreational and medicinal purposes for thousands of years, little was known about its effects at the cellular level or on neuronal circuits. Identification of CB1 receptors and the subsequent development of its specific ligands has therefore enhanced our ability to study and bring together a substantial amount of knowledge regarding how marijuana and eCBs modify interneuronal communication. To date, the eCB system, composed of cannabinoid receptors, ligands and the relevant enzymes, is recognized as the best-described retrograde signalling system in the brain. Its impact on synaptic transmission is widespread and more diverse than initially thought. The aim of this review is to succinctly present the most common forms of eCB-mediated modulation of synaptic transmission, while also illustrating the multiplicity of effects resulting from specializations of this signalling system at the circuital level.
机译:内源性大麻素(eCBs)通过激活许多受体(包括但不限于大麻素受体1(CB1))充当突触传递的调节剂。 eCB与大麻中的主要精神活性成分Δ〜9-四氢大麻酚(THC)共享CB1受体作为共同目标。尽管四氢大麻酚已被用于娱乐和医学目的数千年,但对其在细胞水平或对神经元回路的影响知之甚少。因此,CB1受体的鉴定及其特定配体的后续开发提高了我们研究和收集有关大麻和eCB如何改变神经元间交流的大量知识的能力。迄今为止,由大麻素受体,配体和相关酶组成的eCB系统被公认为是大脑中描述最充分的逆行信号系统。它对突触传递的影响是广泛的,并且比最初认为的要多样化。这篇综述的目的是简要介绍eCB介导的突触传递调节的最常见形式,同时还说明了这种信号系统在电路水平上的专业化所产生的多重影响。

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