Department of Bioinformatics and Biotechnology, Government College University Faisalabad, Faisalabad 38000, Pakistan.
NICM Health Research Institute, Western Sydney University, Westmead, NSW 2145, Australia.
Molecules. 2022 Aug 4;27(15):4961. doi: 10.3390/molecules27154961.
The lack of effective treatment for neurological disorders has encouraged the search for novel therapeutic strategies. Remarkably, neuroinflammation provoked by the activated microglia is emerging as an important therapeutic target for neurological dysfunction in the central nervous system. In the pathological context, the hyperactivation of microglia leads to neuroinflammation through the release of neurotoxic molecules, such as reactive oxygen species, proteinases, proinflammatory cytokines and chemokines. Cannabidiol (CBD) is a major pharmacologically active phytocannabinoids derived from L. CBD has promising therapeutic effects based on mounting clinical and preclinical studies of neurological disorders, such as epilepsy, multiple sclerosis, ischemic brain injuries, neuropathic pain, schizophrenia and Alzheimer's disease. A number of preclinical studies suggested that CBD exhibited potent inhibitory effects of neurotoxic molecules and inflammatory modulators, highlighting its remarkable therapeutic potential for the treatment of numerous neurological disorders. However, the molecular mechanisms of action underpinning CBD's effects on neuroinflammation appear to be complex and are poorly understood. This review summarises the anti-neuroinflammatory activities of CBD against various neurological disorders with a particular focus on their main molecular mechanisms of action, which were related to the downregulation of NADPH oxidase-mediated ROS, TLR4-NFκB and IFN-β-JAK-STAT pathways. We also illustrate the pharmacological action of CBD's derivatives focusing on their anti-neuroinflammatory and neuroprotective effects for neurological disorders. We included the studies that demonstrated synergistic enhanced anti-neuroinflammatory activity using CBD and other biomolecules. The studies that are summarised in the review shed light on the development of CBD, including its derivatives and combination preparations as novel therapeutic options for the prevention and/or treatment of neurological disorders where neuroinflammation plays an important role in the pathological components.
神经紊乱缺乏有效治疗手段,这促使人们寻求新的治疗策略。令人瞩目的是,中枢神经系统神经功能障碍的治疗靶点正逐渐聚焦于激活小胶质细胞引发的神经炎症。在病理环境下,小胶质细胞的过度激活会通过释放活性氧、蛋白酶、促炎细胞因子和趋化因子等神经毒性分子引发神经炎症。大麻二酚(CBD)是一种主要的具有药理活性的植物大麻素,来源于大麻属植物。基于越来越多的神经紊乱临床前和临床研究,大麻二酚具有广阔的治疗前景,如癫痫、多发性硬化症、缺血性脑损伤、神经病理性疼痛、精神分裂症和阿尔茨海默病。许多临床前研究表明,CBD 对神经毒性分子和炎症调节剂具有强大的抑制作用,突出了其治疗多种神经紊乱的巨大潜力。然而,CBD 对神经炎症影响的作用机制似乎很复杂,人们对其了解甚少。本综述总结了 CBD 针对各种神经紊乱的抗炎作用,特别关注其主要的作用机制,这些机制与下调 NADPH 氧化酶介导的 ROS、TLR4-NFκB 和 IFN-β-JAK-STAT 途径有关。我们还介绍了 CBD 衍生物的药理学作用,重点阐述了它们在神经紊乱中的抗炎和神经保护作用。我们纳入了一些研究,这些研究表明 CBD 与其他生物分子联合使用可增强其抗炎作用。综述中总结的研究结果为 CBD 的开发提供了参考,包括其衍生物和联合制剂,为神经炎症在病理成分中发挥重要作用的神经紊乱的预防和/或治疗提供了新的治疗选择。