医学
发病机制
转化医学
生物信息学
GPX4
转化研究
精密医学
氧化应激
心肌细胞
死因
程序性细胞死亡
心肌保护
癌症研究
信号转导
机制(生物学)
广谱
调解人
心脏功能不全
计算生物学
药理学
氧化损伤
脂质代谢
疾病
细胞
免疫学
线粒体
神经科学
重症监护医学
临床试验
炎症
心肌梗塞
作者
Shuxian Guo,Jie Liu,Juan Hua,Lan Ding,Qi Chen
摘要
In the pathogenesis of cardiovascular diseases (CVDs), ferroptosis is increasingly implicated as a key mechanism. This iron-driven, regulated cell death is characterized by the accumulation of lipid peroxides and a deficiency in glutathione. This comprehensive review delineates the molecular underpinnings of ferroptosis-encompassing dysregulated iron metabolism, GPX4 inactivation, and lipid peroxidation-and elucidates its pivotal role in a spectrum of cardiac pathologies. Notably, ferroptosis contributes to oxidative stress, mitochondrial dysfunction, and inflammatory responses, accelerating myocardial damage and functional decline. Emerging evidence indicates that several drugs targeting the ferroptosis pathway including iron chelators, antioxidants, and small-molecule inhibitors such as ferrostatin-1 and liproxstatin-1, demonstrate cardioprotective effects in preclinical models. However, translational challenges remain, including context-dependent roles of regulators like p53 and AMPK, and the need for organelle-specific interventions. This review synthesizes current knowledge and proposes ferroptosis as a promising target for precision medicine in CVDs, urging further research into biomarkers and combination therapies to mitigate the global burden of cardiovascular morbidity and mortality.
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