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- W4283314295 endingPage "2101" @default.
- W4283314295 startingPage "2067" @default.
- W4283314295 abstract "Ischemia/reperfusion (IR) injury contributes to disability and mortality worldwide. Due to the complicated mechanisms and lack of proper therapeutic targets, few interventions are available that specifically target the pathogenesis of IR injury. Regulated cell death (RCD) of endothelial and parenchymal cells is recognized as the promising intervening target. Recent advances in IR injury suggest that small molecules exhibit beneficial effects on various RCD against IR injury, including apoptosis, necroptosis, autophagy, ferroptosis, pyroptosis, and parthanatos. Here, we describe the mechanisms behind these novel promising therapeutic targets and explain the machinery powering the small molecules. These small molecules exert protection by targeting endothelial or parenchymal cells to alleviate IR injury. Therapies of the ideal combination of small molecules targeting multiple cell types have shown potent synergetic therapeutic effects, laying the foundation for novel strategies to attenuate IR injury." @default.
- W4283314295 created "2022-06-24" @default.
- W4283314295 creator A5022526821 @default.
- W4283314295 creator A5046662102 @default.
- W4283314295 creator A5056796466 @default.
- W4283314295 creator A5073070877 @default.
- W4283314295 creator A5088303852 @default.
- W4283314295 date "2022-06-21" @default.
- W4283314295 modified "2023-10-18" @default.
- W4283314295 title "Small molecules as modulators of regulated cell death against ischemia/reperfusion injury" @default.
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