败血症
巨噬细胞
基因传递
遗传增强
抗菌剂
药物输送
抗生素
化学
微生物学
生物
免疫学
材料科学
基因
纳米技术
体外
生物化学
作者
Hongmei Cao,Yang Gao,Haixue Jia,Liping Zhang,Jinjian Liu,Ganen Mu,Han Gui,Yuebing Wang,Cuihong Yang,Jianfeng Liu
出处
期刊:Nano Letters
[American Chemical Society]
日期:2022-09-28
卷期号:22 (19): 7882-7891
被引量:42
标识
DOI:10.1021/acs.nanolett.2c02560
摘要
Sepsis is a life-threatening disease caused by systemic bacterial infections, with high morbidity and mortality worldwide. As the standard treatment for sepsis, antibiotic therapy faces the challenge of impaired macrophages and drug-resistant bacteria. In this study, we developed a membrane-camouflaged metal–organic framework (MOF) system for plasmid DNA (pDNA) delivery to combat sepsis. The antimicrobial gene LL37 was efficiently encapsulated in the pH-sensitive MOF, and the nanoparticles were decorated with macrophage membranes in a compatible manner. Macrophage membrane coating allows targeted delivery of LL37 to macrophages and creates macrophage factories for the continuous generation of antimicrobial peptides. Compared to naked nanoparticles, primary bone marrow mesenchymal macrophage membrane-modified nanoparticles greatly improved the survival rate of immunodeficient septic mice through the synergistic effect of efficient gene therapy and inflammatory cytokine sequestration. This study demonstrates an effective membrane biomimetic strategy for efficiently delivering pDNA, offering an excellent option for overcoming sepsis.
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