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ZBP1-mediated apoptosis and inflammation exacerbate steatotic liver ischemia-reperfusion injury

炎症 再灌注损伤 细胞凋亡 缺血 肝移植 医学 肝损伤 程序性细胞死亡 移植 坏死性下垂 脂肪变性 癌症研究 免疫学 药理学 内分泌学 内科学 生物 生物化学
作者
Yizhi Liu,Huan Cao,Shu‐Hua Zhang,Mao Cai,Tianhao Zou,Guoliang Wang,Di Zhang,Xueling Wang,Jianjun Xu,Shenghe Deng,Tongxi Li,Daichao Xu,Jinyang Gu
出处
期刊:Journal of Clinical Investigation [American Society for Clinical Investigation]
卷期号:134 (13) 被引量:15
标识
DOI:10.1172/jci180451
摘要

There is increasing need to expand availability of donor liver grafts, including steatotic livers. However, the current use of steatotic grafts in liver transplantation is less acceptable due to their higher susceptibility to ischemia-reperfusion (I/R) injury. To investigate the mechanism underlying the susceptibility of steatotic liver to I/R injury, we detected cell death markers and inflammation in clinical donor livers and animal models. We found that caspase-8-mediated hepatic apoptosis is activated in steatotic liver I/R. However, ablation of caspase-8 only slightly mitigated steatotic liver I/R injury without affecting inflammation. We further demonstrated that RIPK1 kinase induces both caspase-8-mediated apoptosis and cell death-independent inflammation. Inhibition of RIPK1 kinase significantly protects against steatotic liver I/R injury by alleviating both hepatic apoptosis and inflammation. Additionally, we found that RIPK1 activation is induced by Z-DNA binding protein 1 (ZBP1) but not the canonical TNFα pathway during steatotic liver I/R. Deletion of ZBP1 substantially decreases the steatotic liver I/R injury. Mechanistically, ZBP1 is amplified by palmitic acid-activated JNK pathway in steatotic livers. Upon I/R, excessive reactive oxygen species trigger ZBP1 activation by inducing its aggregation independent of the Z-nucleic acids sensing action in steatotic livers, leading to the kinase activation of RIPK1 and the subsequent aggravation of liver injury. Thus, ZBP1-mediated RIPK1-driven apoptosis and inflammation exacerbate steatotic liver I/R injury, which could be targeted to protect steatotic donor livers during transplantation.
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