肝星状细胞
CTGF公司
肝细胞
肝损伤
肝纤维化
癌症研究
化学
生物
内分泌学
纤维化
内科学
医学
生长因子
体外
生物化学
受体
作者
Jian Zhang,Yuee Zhao,Gauthami Pulivendala,Qing Zhang,Liangyou Rui,Jiashi Gao,Huiwen Wang,Hui Zhang,Alli M. Nuotio-Antar,Xin Tong,Lei Yin
标识
DOI:10.1002/advs.202415032
摘要
Abstract Sustained activation of hepatic stellate cells (HSCs) drives liver fibrosis in response to chronic liver injury and inflammation. It is reported that profibrogenic signals released from stressed/injured hepatocytes evoke fibrogenic responses in HSCs. However, intrahepatocyte players that modulate such cell‐to‐cell communications remain poorly defined. In this study, hepatic ChREBPα is found to be reduced in mouse models of chemical‐induced liver fibrosis as well as in three groups of human patients with liver fibrosis. Chrebpα‐LKO mice are highly sensitive to both chemical (CCL4 and TAA) and bile duct ligation (BDL)‐induced liver injury and developed more advanced liver fibrosis without affecting liver lipid content. Hepatocyte ChREBPα overexpression suppressed the activation of HSCs in an in vitro medium transfer experiment in part via inhibiting the expression of profibrogenic factors THBS1 and CTGF. RNA‐Seq analysis revealed that E2F1, a novel effector of TGFβ‐mediated fibrogenic pathway, is highly induced in the liver of Chrebpα‐LKO mice. Hepatic knockdown of E2F1 ameliorated the increased liver fibrosis in mice with hepatic Chrebpα deficiency while reducing the expression of hepatic THBS1 and CTGF.
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