Sun Yang, Liu Shasha, Yang Songwei, Chen Chen, Yang Yantao, Lin Meiyu, Liu Chao, Wang Wenmao, Zhou Xudong, Ai Qidi, Wang Wei, Chen Naihong
Hunan Engineering Technology Center of Standardization and Function of Chinese Herbal Decoction Pieces and College of Pharmacy, Hunan University of Chinese Medicine, Changsha, China.
Pharmacy Department, Xiangtan Central Hospital, Xiangtan, China.
Front Pharmacol. 2022 Jan 18;12:794563. doi: 10.3389/fphar.2021.794563. eCollection 2021.
Inflammation plays a crucial role in a variety of diseases, including diabetes, arthritis, asthma, Alzheimer's disease (AD), acute cerebral stroke, cancer, hypertension, and myocardial ischemia. Therefore, we need to solve the problem urgently for the study of inflammation-related diseases. Dihydromyricetin (DHM) is a flavonoid mainly derived from Nekemias grossedentata (Hand.-Mazz.) J.Wen and Z.L.Nie (). DHM possesses many pharmacological effects, including anti-inflammatory (NLRP-3, NF-κB, cytokines, and neuroinflammation), antioxidant, improving mitochondrial dysfunction, and regulating autophagy and so on. In this review, we consulted the studies in the recent 20 years and summarized the mechanism of DHM in inflammation-related diseases. In addition, we also introduced the source, chemical structure, chemical properties, and toxicity of DHM in this review. We aim to deepen our understanding of DHM on inflammation-related diseases, clarify the relevant molecular mechanisms, and find out the problems and solutions that need to be solved urgently. Providing new ideas for DHM drug research and development, as well as broaden the horizons of clinical treatment of inflammation-related diseases in this review. Moreover, the failure of clinical transformation of DHM poses a great challenge for DHM as an inflammation related disease.
炎症在包括糖尿病、关节炎、哮喘、阿尔茨海默病(AD)、急性脑卒、癌症、高血压和心肌缺血在内的多种疾病中起关键作用。因此,对于炎症相关疾病的研究,我们迫切需要解决这一问题。二氢杨梅素(DHM)是一种主要来源于显齿蛇葡萄(Nekemias grossedentata (Hand.-Mazz.) J.Wen and Z.L.Nie)的黄酮类化合物。DHM具有多种药理作用,包括抗炎(NLRP-3、NF-κB、细胞因子和神经炎症)、抗氧化、改善线粒体功能障碍以及调节自噬等。在本综述中,我们查阅了近20年的研究,并总结了DHM在炎症相关疾病中的作用机制。此外,我们还在本综述中介绍了DHM的来源、化学结构、化学性质和毒性。我们旨在加深对DHM在炎症相关疾病方面的理解,阐明相关分子机制,并找出迫切需要解决的问题及解决方案。为DHM药物研发提供新思路,以及拓宽本综述中炎症相关疾病临床治疗的视野。此外,DHM临床转化的失败对其作为一种炎症相关疾病的治疗构成了巨大挑战。