传出细胞增多
医学
炎症
自噬
心肌梗塞
心功能曲线
粒细胞
体内
心脏病学
内科学
药理学
中性粒细胞
心力衰竭
平衡
心肌保护
吞噬作用
内质网
下调和上调
流式细胞术
免疫学
细胞
细胞生物学
中性粒细胞胞外陷阱
心内膜
细胞凋亡
炎症反应
心肌顿抑
内皮
作者
Zeng Wang,Lai Wei,Mingyang Wang,S. Wang,Lili Xiu,Jiayu Sun,Rongzhe Lu,Yige Liu,Jiaxin Wang,Fengyi Liu,Weike Liu,Bo Yu,Yong Sun,Xueqin Gao,Shaohong Fang
标识
DOI:10.1002/advs.202514863
摘要
Delayed neutrophil clearance after myocardial infarction (MI) significantly disrupts the myocardial microenvironment, but the underlying mechanisms remain unclear. Macrophage-mediated efferocytosis of infiltrating neutrophils is crucial for resolving inflammation and restoring homeostasis post-MI. However, the specific regulatory mechanisms governing neutrophil clearance and efferocytosis remain undefined. This study demonstrates a significant correlation between increased IRGM expression in peripheral blood neutrophils of patients with MI and improved prognostic outcomes. Neutrophil-specific deletion of Irgm1 exacerbates cardiac dysfunction, impairs post-MI repair, and hinders neutrophil clearance and efferocytosis. Irgm1 deficiency further delays neutrophil clearance in the heart and extends neutrophil survival. Mechanistically, Irgm1 directly interacts with PDIA3, promoting its autophagic degradation, which in turn activates the endoplasmic reticulum stress/NF-κB/caspase-3 pathway to facilitate neutrophil clearance and efferocytosis. In vivo administration of LOC14 significantly reduces tissue damage and enhances cardiac recovery in neutrophil Irgm1-deficient mice post-MI. These findings highlight the pivotal role of the Irgm1-PDIA3 axis in facilitating cardiac repair post-MI by promoting neutrophil clearance. LOC14 may serve as a potential therapeutic agent to enhance cardiac function post-MI, particularly in Irgm1-deficient cases.
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