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Hepatology Commons

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Full-Text Articles in Hepatology

Transplanted Adult Human Hepatic Stem/Progenitor Cells Prevent Histogenesis Of Advanced Hepatic Fibrosis In Mice Induced By Carbon Tetrachloride, Yanzhen Bi, Xiyu Liu, Chuanping Si, Ye Hong, Yongke Lu, Pengfei Gao, Yonghong Yang, Xiaobei Zhang, Yibo Wang, Huabao Xiong, Zhongping Duan, Yu Chen, Feng Hong Apr 2019

Transplanted Adult Human Hepatic Stem/Progenitor Cells Prevent Histogenesis Of Advanced Hepatic Fibrosis In Mice Induced By Carbon Tetrachloride, Yanzhen Bi, Xiyu Liu, Chuanping Si, Ye Hong, Yongke Lu, Pengfei Gao, Yonghong Yang, Xiaobei Zhang, Yibo Wang, Huabao Xiong, Zhongping Duan, Yu Chen, Feng Hong

Pharmacology, Physiology and Toxicology

Transplantation of adult human hepatic stem/progenitor cells (hHSPCs) has been considered as an alternative therapy, replacing donor liver transplantation to treat liver cirrhosis. This study assessed the antifibrotic effects of hHSPCs in mice with fibrosis induced by carbon tetrachloride (CCl4) and examined the actions of hHSPCs on the fibrogenic activity of human hepatic stellate cells (HSCs) in a coculture system. Isolated hHSPCs expressed stem/progenitor cell phenotypic markers. Mice were given CCl4 (twice weekly for 7 weeks) and hHSPC transplantation weekly. CCl4 induced advanced fibrosis (bridging fibrosis and cirrhosis) in mice, which was prevented by hHSPC transplantation. …


Autophagy Protects Against Cyp2e1/Chronic Ethanol-Induced Hepatotoxicity, Yongke Lu, Arthur I. Cederbaum Oct 2015

Autophagy Protects Against Cyp2e1/Chronic Ethanol-Induced Hepatotoxicity, Yongke Lu, Arthur I. Cederbaum

Pharmacology, Physiology and Toxicology

Autophagy is an intracellular pathway by which lysosomes degrade and recycle long-lived proteins and cellular organelles. The effects of ethanol on autophagy are complex but recent studies have shown that autophagy serves a protective function against ethanol-induced liver injury. Autophagy was found to also be protective against CYP2E1-dependent toxicity in vitro in HepG2 cells which express CYP2E1 and in vivo in an acute alcohol/CYPE1-dependent liver injury model. The goal of the current report was to extend the previous in vitro and acute in vivo experiments to a chronic ethanol model to evaluate whether autophagy is also protective against CYP2E1-dependent liver …