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非精神活性大麻植物复合物通过CB2受体、内源性大麻素和NF-κB介导的信号传导调节小胶质细胞炎症反应。

Non-psychotropic Cannabis sativa L. phytocomplex modulates microglial inflammatory response through CB2 receptors-, endocannabinoids-, and NF-κB-mediated signaling.

作者信息

Borgonetti Vittoria, Benatti Cristina, Governa Paolo, Isoldi Giovanni, Pellati Federica, Alboni Silvia, Tascedda Fabio, Montopoli Monica, Galeotti Nicoletta, Manetti Fabrizio, Miraldi Elisabetta, Biagi Marco, Rigillo Giovanna

机构信息

Department of Neuroscience, Psychology, Drug Research and Child Health (NEUROFARBA), Section of Pharmacology, University of Florence, Florence, Italy.

Center for Neuroscience and Neurotechnology, University of Modena and Reggio Emilia, Modena, Italy.

出版信息

Phytother Res. 2022 May;36(5):2246-2263. doi: 10.1002/ptr.7458. Epub 2022 Apr 8.

Abstract

Cannabis sativa L. is increasingly emerging for its protective role in modulating neuroinflammation, a complex process orchestrated among others by microglia, the resident immune cells of the central nervous system. Phytocannabinoids, especially cannabidiol (CBD), terpenes, and other constituents trigger several upstream and downstream microglial intracellular pathways. Here, we investigated the molecular mechanisms of a CBD- and terpenes-enriched C. sativa extract (CSE) in an in vitro model of neuroinflammation. We evaluated the effect of CSE on the inflammatory response induced by exposure to lipopolysaccharide (LPS) in BV-2 microglial cells, compared with CBD and β-caryophyllene (CAR), CB2 receptors (CB2r) inverse and full agonist, respectively. The LPS-induced upregulation of the pro-inflammatory cytokines IL-1β, IL-6, and TNF-α was significantly attenuated by CSE and only partially by CBD, whereas CAR was ineffective. In BV-2 cells, these anti-inflammatory effects exerted by CSE phytocomplex were only partially dependent on CB2r modulation and they were mediated by the regulation of enzymes responsible for the endocannabinoids metabolism, by the inhibition of reactive oxygen species release and the modulation of JNK/p38 cascade with consequent NF-κB p65 nuclear translocation suppression. Our data suggest that C. sativa phytocomplex and its multitarget mechanism could represent a novel therapeutic strategy for neuroinflammatory-related diseases.

摘要

大麻(Cannabis sativa L.)在调节神经炎症方面的保护作用日益凸显,神经炎症是一个复杂的过程,由小胶质细胞(中枢神经系统的常驻免疫细胞)等共同协调。植物大麻素,尤其是大麻二酚(CBD)、萜类化合物和其他成分会触发小胶质细胞内的多个上游和下游信号通路。在此,我们在神经炎症的体外模型中研究了富含CBD和萜类化合物的大麻提取物(CSE)的分子机制。我们评估了CSE对BV-2小胶质细胞中脂多糖(LPS)诱导的炎症反应的影响,并分别与CBD和β-石竹烯(CAR)进行比较,后者分别是CB2受体(CB2r)的反向激动剂和完全激动剂。LPS诱导的促炎细胞因子IL-1β、IL-6和TNF-α的上调被CSE显著减弱,而仅被CBD部分减弱,而CAR则无效。在BV-2细胞中,CSE植物复合物发挥的这些抗炎作用仅部分依赖于CB2r调节,它们是通过负责内源性大麻素代谢的酶的调节、活性氧释放的抑制以及JNK/p38级联反应的调节,从而抑制NF-κB p65核转位来介导的。我们的数据表明,大麻植物复合物及其多靶点机制可能代表了一种针对神经炎症相关疾病的新型治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2131/9325551/b0660922aedb/PTR-36-2246-g007.jpg

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