雷公藤
雷公藤甲素
雷公藤
药理学
肝损伤
化学
雷公藤醇
代谢组学
谷胱甘肽
医学
过氧化物酶体增殖物激活受体
细胞凋亡
受体
生物化学
糖苷
酶
病理
色谱法
立体化学
替代医学
作者
Manyun Dai,Peng Wan,Ting Zhang,Qi Zhao,Xiaofang Ma,Yan Cheng,Chunyan Wang,Fei Li
标识
DOI:10.1016/j.jep.2022.115090
摘要
Tripterygium glycosides tablets (TGT) and Tripterygium wilfordii tablets (TWT) have been used to treat autoimmune diseases clinically, however, the side effects of TWT are higher than TGT, especially for hepatotoxicity.This study aims to determine the mechanism of TWT-induced liver injury.We performed metabolomic analysis of samples from mice with liver injury induced by TGT and TWT. Ppara-null mice were used to determine the role of PPARα in TWT-induced liver injury.The results indicated that TWT induced the accumulation of medium- and long-chain carnitines metabolism, which was associated with the disruption of PPARα-IL6-STAT3 axis. PPARα agonists fenofibrate could reverse the liver injury from TWT and TP/Cel, and its protective role could be attenuated in Ppara-null mice. The toxicity difference of TWT and TGT was due to the different ratio of triptolide (TP) and celastrol (Cel) in the tablet in which TP/Cel was lower in TWT than TGT. The hepatotoxicity induced by TP and Cel also inhibited PPARα and upregulated IL6-STAT3 axis, which could be alleviated following by PPARα activation.These results indicated that PPARα plays an important role in the hepatotoxicity of Tripterygium wilfordii, and PPARα activation may offer a promising approach to prevent hepatotoxicity induced by the preparations of Tripterygium wilfordii.
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