自噬
IRF7
败血症
ATG12
生物
转录因子
免疫学
发病机制
癌症研究
机制(生物学)
炎症
细胞生物学
自噬体
干扰素调节因子
先天免疫系统
促炎细胞因子
细胞因子
吞噬体
微生物学
NF-κB
旁观者效应
内部收益率1
巨噬细胞
吞噬作用
干扰素
信号转导
内部收益率3
NFKB1型
医学
作者
Guiming Chen,Kangxin Li,Haihua Luo,Lianxu Zhao,Yong Jiang
出处
期刊:JCI insight
[American Society for Clinical Investigation]
日期:2025-11-09
卷期号:10 (21)
标识
DOI:10.1172/jci.insight.189420
摘要
Sepsis contributes substantially to mortality rates worldwide, yet clinical trials that have focused on its underlying pathogenesis have failed to demonstrate benefits. Recently, enhancing self-defense has been regarded as an emerging therapeutic approach. Autophagy is a self-defense mechanism that protects septic mice, but its regulatory factor is still unknown. Moreover, the role of interferon regulatory factor 7 (IRF7) in sepsis has been debated. Here, we showed that Irf7 deficiency increased mortality during polymicrobial sepsis. Furthermore, IRF7 drove macrophages to protect against sepsis. Mechanistically, IRF7 is a transcription factor that upregulates the expression of autophagy-related genes responsible for autophagosome formation and autolysosome maturation, induces autophagic killing of bacteria, and ultimately reduces septic organ injury. Recombinant adeno-associated virus 9-Irf7-mediated IRF7 overexpression promoted the autophagic clearance of pathogens and improved sepsis outcomes, which may be the mechanism underlying the observed improvement in bacterial clearance. These findings provide evidence that IRF7 is the underlying regulatory factor that drives autophagy to eliminate pathogens in macrophages during sepsis. Collectively, IRF7 overexpression represents a potential host-directed therapeutic strategy for preclinical sepsis models, operating independently of antibiotic mechanisms.
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