胆汁淤积
肝星状细胞
纤维化
胆盐出口泵
肝纤维化
进行性家族性肝内胆汁淤积症
内科学
胆汁酸
原发性硬化性胆管炎
医学
生物
化学
病理
生物化学
肝移植
疾病
运输机
基因
移植
作者
Simon Hohenester,Veronika Kanitz,Andreas E. Kremer,Coen C. Paulusma,Ralf Wimmer,Helen Kuehn,Gerald Denk,David Horst,Ronald Oude Elferink,Ulrich Beuers
出处
期刊:Cells
[Multidisciplinary Digital Publishing Institute]
日期:2020-01-23
卷期号:9 (2): 281-281
被引量:51
摘要
Hydrophobic bile salts are considered to promote liver fibrosis in cholestasis. However, evidence for this widely accepted hypothesis remains scarce. In established animal models of cholestasis, e.g., by Mdr2 knockout, cholestasis and fibrosis are both secondary to biliary damage. Therefore, to test the specific contribution of accumulating bile salts to liver fibrosis in cholestatic disease, we applied the unique model of inducible hepatocellular cholestasis in cholate-fed Atp8b1G308V/G308V mice. Glycochenodeoxycholate (GCDCA) was supplemented to humanize the murine bile salt pool, as confirmed by HPLC. Biomarkers of cholestasis and liver fibrosis were quantified. Hepatic stellate cells (HSC) isolated from wild-type mice were stimulated with bile salts. Proliferation, cell accumulation, and collagen deposition of HSC were determined. In cholestatic Atp8b1G308V/G308V mice, increased hepatic expression of αSMA and collagen1a mRNA and excess hepatic collagen deposition indicated development of liver fibrosis only upon GCDCA supplementation. In vitro, numbers of myofibroblasts and deposition of collagen were increased after incubation with hydrophobic but not hydrophilic bile salts, and associated with EGFR and MEK1/2 activation. We concluded that chronic hepatocellular cholestasis alone, independently of biliary damage, induces liver fibrosis in mice in presence of the human bile salt GCDCA. Bile salts may have direct pro-fibrotic effects on HSC, putatively involving EGFR and MEK1/2 signaling.
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