吲哚嗪
化学
脂质过氧化
氧化应激
药理学
效力
细胞损伤
程序性细胞死亡
肝损伤
化学型
冲程(发动机)
药品
缺血性中风
细胞
缺血预处理
细胞损伤
药物发现
表型
结构-活动关系
内科学
癌症研究
体外
生物化学
神经保护
磷脂酰胆碱
细胞培养
生物活性
缺血
激进的
细胞生长
作者
Yijing Shu,Yuheng Jiang,Ying Xiong,Sheng Huang,Chen Lunjie,Wen Ye,Yao Jian,Yimou Gong,BoWen Lei,Dong Yi,Dan Zhang,Anguo Wu,Siping Wei,Qiang Fu,Xia Zhou
标识
DOI:10.1021/acs.jmedchem.5c03439
摘要
Ferroptosis is a regulated form of cell death driven by iron-dependent lipid peroxidation. Inhibiting ferroptosis has emerged as a promising therapeutic strategy, but existing inhibitors suffer from limited chemical diversity and suboptimal drug-likeness. Here, we report 1,3-disubstituted indolizine derivatives as novel noncanonical ferroptosis inhibitors. Through phenotypic screening and SAR optimization, we identified D12 (3-(2-methylbenzoyl)indolizine-1-yl acetate). D12 exhibits nanomolar potency (EC50 = 39.7 nM) in RSL3/erastin-induced PC12 cells, outperforming Fer-1. Mechanistically, D12 acts independently of iron chelation, radical trapping, or direct Nrf2 activation; instead, it alleviates oxidative stress and lipid peroxidation upstream. Compared to Fer-1, D12 displays improved metabolic stability, markedly higher systemic exposure, and robust brain penetration (brain/plasma ratio = 6.31). In vivo, D12 attenuates acetaminophen-induced liver injury and cerebral ischemia-reperfusion injury. These findings establish D12 as a mechanistically distinct, drug-like preclinical candidate and. highlight the indolizine scaffold as a promising new chemotype for ferroptosis-targeted drug discovery.
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