肝保护
氧化应激
KEAP1型
药理学
肝损伤
脂质过氧化
GCLM公司
生物
生物化学
转录因子
谷胱甘肽
基因
酶
GCLC公司
作者
Hongxu Du,K. Yang,Jingyi Yang,Jingyuan Wan,Yu Pan,Weijie Song,Shuang Xu,Chen Cheng,Jiahui Li
出处
期刊:Veterinary Sciences
[Multidisciplinary Digital Publishing Institute]
日期:2025-04-09
卷期号:12 (4): 350-350
标识
DOI:10.3390/vetsci12040350
摘要
Liver injury poses major health risks in livestock, necessitating effective therapeutic interventions. This study elucidates the hepatoprotective mechanisms of Euphorbia humifusa Willd. ex Schltdl. (EHW) by integrating network pharmacology, molecular docking, and experimental validation. Using a CCl4-induced liver injury model mimicking veterinary clinical scenarios, EHW markedly alleviated hepatic damage, demonstrated by reduced liver index, serum ALT and AST levels, histopathological lesions, iron accumulation, inflammatory cytokines, and ferroptosis-associated gene expression. Network pharmacology identified EHW’s core bioactive components (quercetin, kaempferol, and β-sitosterol) and critical targets (IL-6, STAT3, HIF-1α, PTGS2, NFE2L2, and KEAP1) which were linked to ferroptosis and oxidative stress. Molecular docking revealed robust binding affinities between these compounds and ferroptosis-related proteins. In vivo validation confirmed that EHW inhibited KEAP1, activated NFE2L2-mediated antioxidant defenses (upregulating SOD1 and NQO1), restored iron homeostasis (lowering TFR1, elevating FTH1), and attenuated phospholipid peroxidation by suppressing ACSL4 and ALOX12. These results indicate that EHW mitigates ferroptosis-driven liver injury via KEAP1-NFE2L2 signaling to restore iron homeostasis and reduce oxidative stress, offering a mechanistic foundation for its clinical application in veterinary hepatoprotection.
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