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大麻二酚对线粒体功能的调节作用:综述。

Regulatory Effects of Cannabidiol on Mitochondrial Functions: A Review.

机构信息

Department of Kinesiology and Health Sciences, Faculty of Health, University of Waterloo, 200 University Ave W, Waterloo, ON N2L 3G1, Canada.

出版信息

Cells. 2021 May 19;10(5):1251. doi: 10.3390/cells10051251.

Abstract

Cannabidiol (CBD) is part of a group of phytocannabinoids derived from Initial work on CBD presumed the compound was inactive, but it was later found to exhibit antipsychotic, anti-depressive, anxiolytic, and antiepileptic effects. In recent decades, evidence has indicated a role for CBD in the modulation of mitochondrial processes, including respiration and bioenergetics, mitochondrial DNA epigenetics, intrinsic apoptosis, the regulation of mitochondrial and intracellular calcium concentrations, mitochondrial fission, fusion and biogenesis, and mitochondrial ferritin concentration and mitochondrial monoamine oxidase activity regulation. Despite these advances, current data demonstrate contradictory findings with regard to not only the magnitude of effects mediated by CBD, but also to the direction of effects. For example, there are data indicating that CBD treatment can increase, decrease, or have no significant effect on intrinsic apoptosis. Differences between studies in cell type, cell-specific response to CBD, and, in some cases, dose of CBD may help to explain differences in outcomes. Most studies on CBD and mitochondria have utilized treatment concentrations that exceed the highest recorded plasma concentrations in humans, suggesting that future studies should focus on CBD treatments within a range observed in pharmacokinetic studies. This review focuses on understanding the mechanisms of CBD-mediated regulation of mitochondrial functions, with an emphasis on findings in neural cells and tissues and therapeutic relevance based on human pharmacokinetics.

摘要

大麻二酚(CBD)是植物大麻素的一组化合物之一,最初的 CBD 研究认为该化合物不具有活性,但后来发现它具有抗精神病、抗抑郁、抗焦虑和抗癫痫作用。近几十年来,有证据表明 CBD 在调节线粒体过程中发挥作用,包括呼吸和生物能、线粒体 DNA 表观遗传学、内在凋亡、线粒体和细胞内钙浓度的调节、线粒体裂变、融合和生物发生以及线粒体铁蛋白浓度和线粒体单胺氧化酶活性调节。尽管取得了这些进展,但目前的数据不仅表明 CBD 介导的作用幅度存在矛盾,而且表明作用方向也存在矛盾。例如,有数据表明,CBD 治疗可以增加、减少或对内在凋亡没有显著影响。细胞类型、CBD 对细胞的特定反应以及在某些情况下 CBD 的剂量之间的差异可能有助于解释结果的差异。大多数关于 CBD 和线粒体的研究都使用了治疗浓度,这些浓度超过了人类血浆中记录的最高浓度,这表明未来的研究应集中在药代动力学研究中观察到的范围内的 CBD 治疗。这篇综述重点探讨了理解 CBD 介导的线粒体功能调节机制,强调了神经细胞和组织中的发现以及基于人体药代动力学的治疗相关性。

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