肝损伤
坏死性下垂
胆管上皮细胞
炎症
纤维化
酒精性肝炎
上睑下垂
内科学
肾
内分泌学
脂肪变性
肝细胞
医学
程序性细胞死亡
酒精性肝病
肝硬化
炎症体
细胞凋亡
生物
体外
生物化学
作者
Martí Ortega‐Ribera,Yuan Zhuang,Veronika Brezáni,Radhika Joshi,Zsuzsanna K. Zsengellér,Prashanth Thevkar Nagesh,Aditi Ashish Datta,Gyöngyi Szabó
出处
期刊:
[BMJ]
日期:2025-01-01
卷期号:3 (1): e100151-e100151
被引量:5
标识
DOI:10.1136/egastro-2024-100151
摘要
Background: Gasdermin D (GSDM-D), a key executor of pyroptosis, is increased in various liver diseases and contributes to disease progression. Alcohol induces inflammasome activation and cell death, which are both linked to GSDM-D activation. However, its role in alcohol-induced acute-on-chronic liver failure (ACLF) remains unclear. Methods: ACLF was induced in GSDM-D-deficient or wild-type (WT) mice by 28-day bile duct ligation surgery plus a single 5 g/kg alcohol binge leading to acute decompensation. Nine hours after the alcohol binge, blood, liver, kidney and cerebellum specimens were collected for analysis. Results: Active GSDM-D was significantly increased in humans and mice ACLF livers compared with both healthy controls and cirrhotic livers. GSDM-D-deficient mice with ACLF showed decreased inflammation, neutrophil infiltration and fibrosis in the liver, together with a reduction in pyroptotic, apoptotic and necroptotic death, compared with WT ACLF mice. Notably, GSDM-D-deficient mice also showed decreased liver regeneration and hepatocyte function. This was associated with an increase in senescence and expression of stem-like/cholangiocyte markers in the liver. Interestingly, in the kidney, GSDM-D-deficient mice showed an increase in histopathological damage score, decreased function and increased expression of necroptosis-related genes. In the cerebellum, GSDM-D deficiency increased the expression of neuroinflammation markers, astrocyte activation and apoptosis-related genes. Conclusion: Our data indicate that GSDM-D deficiency has organ-specific effects in ACLF. While it reduces inflammation, neutrophil activation, cell death and fibrosis in the liver, GSDM-D deficiency impairs the synthetic function and increases senescence in hepatocytes. GSDM-D deficiency also increases kidney injury and neuroinflammation in ACLF.
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