荧光素酶
药理学
化学
法尼甾体X受体
三萜类
对接(动物)
肝纤维化
纤维化
计算生物学
生物化学
生物
核受体
医学
转录因子
立体化学
基因
病理
护理部
转染
作者
Yi Zhang,Kaiyuan Jiang,Pei Liu,Yingying Tang,Guancheng Li,Aizhen Xiong,Li Yang,Zhengtao Wang
标识
DOI:10.1080/14786419.2022.2149520
摘要
Protostane-type triterpenoids are antifibrotic nature components with unique structures in Alismatis Rhizoma. However, the underlying mechanisms of them against liver fibrosis are not well illustrated. The present study aims to study the targets and mechanisms of Alismatis Rhizoma triterpenes responsible for their antifibrotic effects by network pharmacology, molecular docking, and luciferase assay. As a result, six molecular targets responsible for the antifibrotic effects of alisols against liver fibrosis were uncovered by network pharmacology, among which the activation of farnesoid X receptor (FXR/NR1H4) was highlighted and further confirmed by molecular docking and luciferase assay. Our present study provides a scientific basis for treating liver fibrosis by using Alismatis Rhizoma, especially via the FXR activation effects of alisols.
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