Protection of zero-valent iron nanoparticles against sepsis and septic heart failure

Septic heart failure accounts for high mortality rates globally. With a strong reducing capacity, zero-valent iron nanoparticles (nanoFe) have been applied in many fields. However, the precise roles and mechanisms of nanoFe in septic cardiomyopathy remain unknown. NanoFe was prepared via the liquid-...

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Veröffentlicht in:Journal of nanobiotechnology 2022-09, Vol.20 (1), p.1-405, Article 405
Hauptverfasser: Wang, Daquan, Wang, Changyu, Liang, Zhenxing, Lei, Wangrui, Deng, Chao, Liu, Xiaoli, Jiang, Shuai, Zhu, Yanli, Zhang, Shaofei, Yang, Wenwen, Chen, Ying, Qiu, Yao, Meng, Lingjie, Yang, Yang
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Sprache:eng
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Zusammenfassung:Septic heart failure accounts for high mortality rates globally. With a strong reducing capacity, zero-valent iron nanoparticles (nanoFe) have been applied in many fields. However, the precise roles and mechanisms of nanoFe in septic cardiomyopathy remain unknown. NanoFe was prepared via the liquid-phase reduction method and functionalized with the biocompatible polymer sodium carboxymethylcellulose (CMC). We then successfully constructed a mouse model of septic myocardial injury by challenging with cecal ligation and puncture (CLP). Our findings demonstrated that nanoFe has a significant protective effect on CLP-induced septic myocardial injury. This may be achieved by attenuating inflammation and oxidative stress, improving mitochondrial function, regulating endoplasmic reticulum stress, and activating the AMPK pathway. The RNA-seq results supported the role of nanoFe treatment in regulating a transcriptional profile consistent with its role in response to sepsis. The results provide a theoretical basis for the application strategy and combination of nanoFe in sepsis and septic myocardial injury.
ISSN:1477-3155
1477-3155
DOI:10.1186/s12951-022-01589-1