Mesenchymal stem cell-derived extracellular vesicles protect against abdominal aortic aneurysm formation by inhibiting NET-induced ferroptosis

间充质干细胞 中性粒细胞胞外陷阱 PI3K/AKT/mTOR通路 细胞生物学 细胞外小泡 细胞凋亡 细胞外 腹主动脉瘤 癌症研究 蛋白激酶B 化学 体外 细胞 生物 免疫学 信号转导 医学 炎症 生物化学 外科 动脉瘤
作者
Liang Chen,Yuting Liu,Zheyu Wang,Leiyang Zhang,Yi Xu,Yinan Li,Lan Zhang,Guiming Wang,Shuofei Yang,Guanhua Xue
出处
期刊:Experimental and Molecular Medicine [Springer Nature]
卷期号:55 (5): 939-951 被引量:57
标识
DOI:10.1038/s12276-023-00986-2
摘要

Abstract Neutrophil extracellular traps (NETs) play an important role in abdominal aortic aneurysm (AAA) formation; however, the underlying molecular mechanisms remain unclear. Mesenchymal stem cell-derived extracellular vesicles (MSC-EVs) may exert therapeutic effects on AAA through their immunomodulatory and regenerative abilities. This study aimed to examine the role and mechanism of MSC-EVs in regulating the development of NET-mediated AAA. Excessive release of NETs was observed in patients with AAA, and the levels of NET components were associated with the clinical outcomes of the patients. Datasets from the Gene Expression Omnibus database were analyzed and revealed that the PI3K/AKT pathway and ferroptosis were strongly associated with NETosis during AAA formation. Further experiments verified that NETs promoted AAA formation by inducing ferroptosis in smooth muscle cells (SMCs) by inhibiting the PI3K/AKT pathway. The PI3K agonist 740 Y-P, the ferroptosis inhibitor ferrostatin-1, and Padi4 deficiency significantly prevented AAA formation. MSC-EVs attenuated AAA formation by reducing NET release in an angiotensin II-induced AAA mouse model. In vitro experiments revealed that MSC-EVs reduced the release of NETs by shifting NETosis to apoptosis. Our study indicates an important role for NET-induced SMC ferroptosis in AAA formation and provides several potential targets for AAA treatment.
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