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The endocannabinoid system: ‘NO’ longer anonymous in the control of nitrergic signalling?

机译:内源性大麻素系统:“不再”不再能控制硝化信号了吗?

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The endocannabinoid system (ECS) is a key cellular signalling system that has been implicated in the regulation of diverse cellular functions. Importantly, growing evidence suggests that the biological actions of the ECS may, in part, be mediated through its ability to regulate the production and/or release of nitric oxide, a ubiquitous bioactive molecule, which functions as a versatile signalling intermediate. Herein, we review and discuss evidence pertaining to ECS-mediated regulation of nitric oxide production, as well as the involvement of reactive nitrogen species in regulating ECS-induced signal transduction by highlighting emerging work supporting nitrergic modulation of ECS function. Importantly, the studies outlined reveal that interactions between the ECS and nitrergic signalling systems can be both stimulatory and inhibitory in nature, depending on cellular context. Moreover, such crosstalk may act to maintain proper cell function, whereas abnormalities in either system can undermine cellular homoeostasis and contribute to various pathologies associated with their dysregulation. Consequently, future studies targeting these signalling systems may provide new insights into the potential role of the ECS – nitric oxide signalling axis in disease development and/or lead to the identification of novel therapeutic targets for the treatment of nitrosative stress-related neurological, cardiovascular, and metabolic disorders.
机译:内源性大麻素系统(ECS)是关键的细胞信号传导系统,已参与多种细胞功能的调节。重要的是,越来越多的证据表明,ECS的生物学作用可能部分是通过其调节一氧化氮(一种普遍存在的生物活性分子)的生产和/或释放的能力来介导的,而一氧化氮作为一种通用的信号传递中间体。在这里,我们通过重点介绍支持ECS功能的硝化调节的新兴工作,回顾和讨论与ECS介导的一氧化氮产生调节有关的证据,以及反应性氮物质在调节ECS诱导的信号转导中的参与。重要的是,概述的研究表明,取决于细胞环境,ECS和亚硝酸信号系统之间的相互作用本质上既可以是刺激性的,也可以是抑制性的。而且,这种串扰可能起到维持适当的细胞功能的作用,而任一系统中的异常都可能破坏细胞的稳态并导致与其失调相关的各种病理。因此,针对这些信号系统的未来研究可能会提供有关ECS-一氧化氮信号转导轴在疾病发展中潜在作用的新见解,并/或导致确定用于治疗亚硝化应激相关的神经系统,心血管系统,和代谢性疾病。

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