Hydronidone ameliorates liver fibrosis by inhibiting activation of hepatic stellate cells via Smad7‐mediated degradation of TGFβRI

Author:

Xu Xianjun12,Guo Yuecheng12,Luo Xin12,Shen Zhenyang12,Sun Zhongshang3,Shen Bo12,Zhou Cui12,Wang Junjun12,Lu Jingyi12,Zhang Qingqing12,Ye Yanping4,Luo Ying4,Qu Ying12,Cai Xiaobo12,Dong Hui12,Lu Lungen12ORCID

Affiliation:

1. Department of Gastroenterology Shanghai General Hospital, Shanghai Jiao Tong University School of Medicine Shanghai China

2. Shanghai Key Laboratory of Pancreatic Diseases Shanghai Jiao Tong University School of Medicine Shanghai China

3. Department of Gastroenterology Huaian First People's Hospital, Nanjing Medical University Huaian China

4. Continent Pharmaceuticals Co., Ltd. Beijing China

Abstract

AbstractBackground and PurposeLiver fibrosis is a wound‐healing reaction that eventually leads to cirrhosis. Hydronidone is a new pyridine derivative with the potential to treat liver fibrosis. In this study, we explored the antifibrotic effects of hydronidone and its potential mode of action.MethodsThe anti‐hepatic fibrosis effects of hydronidone were studied in carbon tetrachloride (CCl4)‐ and 3,5‐diethoxycarbonyl‐1,4‐dihydrocollidine (DDC)‐ induced animal liver fibrosis. The antifibrotic mechanisms of hydronidone were investigated in hepatic stellate cells (HSCs). The antifibrotic effect of hydronidone was further tested after Smad7 knockdown in HSCs in mouse models of fibrosis.ResultsIn animal models, hydronidone attenuated liver damage and collagen accumulation, and reduced the expression of fibrosis‐related genes. Hydronidone decreased the expression of fibrotic genes in HSCs. Impressively, hydronidone significantly upregulated Smad7 expression and promoted the degradation of transforming growth factor β receptor I (TGFβRI) in HSCs and thus inhibited the TGFβ‐Smad signalling pathway. Specific knockdown of Smad7 in HSCs in vivo blocked the antifibrotic effect of hydronidone.ConclusionHydronidone ameliorates liver fibrosis by inhibiting HSCs activation via Smad7‐mediated TGFβRI degradation. Hydronidone is a potential drug candidate for the treatment of liver fibrosis.

Publisher

Wiley

Subject

Hepatology

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