炎症
医学
造血
心力衰竭
调节器
心肌梗塞
髓样
下调和上调
骨髓
免疫学
细胞凋亡
内科学
癌症研究
程序性细胞死亡
心脏病学
巨噬细胞
心功能曲线
负调节器
促炎细胞因子
细胞
血液学
心室重构
全身炎症
心肌细胞
作者
David Smyth,Liyong Zhang,Mohammad Omar AL-Khalaf,Sabrina Robichaud,Richard J. Seymour,Michèle Geoffrion,Richard G. Jung,Simon Parlow,Feng Du,Brian McNeill,Qiujiang Du,Caroline Beauregard,Xiaoling Zhao,Mireille Ouimet,Shawn T. Beug,Eric C. LaCasse,Katey J. Rayner,Tak W. Mak,Benjamin Hibbert,Robert G. Korneluk
标识
DOI:10.1038/s44161-026-00782-x
摘要
Ischemic heart disease, driven largely by myocardial infarction (MI), remains the leading cause of mortality and morbidity. Although early suppression of post-MI inflammation improves outcomes, current therapies have limited efficacy. Here we show that the cellular inhibitor of apoptosis 2 (cIAP2), a regulator of cell death, is upregulated after MI and promotes acute inflammation and cardiac injury. Global deletion of cIAP2, or its loss through bone marrow transfer, reduced inflammatory injury and cardiac dysfunction after MI, indicating that the cardioprotective effect of cIAP2 deficiency is primarily mediated by the hematopoietic compartment. Reduced cardiac inflammation was associated with decreased splenic myeloid cell numbers due to increased cell death and elevated expression of the death-inducing factors TRAIL and TRAIL-R2/DR5. Pharmacologic degradation of cIAP proteins after MI using Smac mimetics similarly reduced cardiac inflammation and protected against injury. Together, these findings identify cIAP2 as a key hematopoietic cell-expressed regulator of survival and inflammation and support its inhibition as a potential immunotherapeutic strategy for MI.
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