微生物学
抗菌剂
细菌
致病菌
核酸
核酸酶
化学
生物
病毒学
生物化学
DNA
遗传学
作者
Jieran Yao,Zhen‐Hong Luo,Jiaying Lin,Na Meng,Jiangna Guo,Hui Xu,Rongwei Shi,Linhui Zhao,Jiateng Zhou,Feng Yan,Bin Wang,Hailei Mao
出处
期刊:Advanced Science
[Wiley]
日期:2024-04-22
卷期号:11 (24): e2309590-e2309590
被引量:10
标识
DOI:10.1002/advs.202309590
摘要
The escalating spread of drug-resistant bacteria and viruses is a grave concern for global health. Nucleic acids dominate the drug-resistance and transmission of pathogenic microbes. Here, imidazolium-type poly(ionic liquid)/porphyrin (PIL-P) based electrospun nanofibrous membrane and its cerium (IV) ion complex (PIL-P-Ce) are developed. The obtained PIL-P-Ce membrane exhibits high and stable efficiency in eradicating various microorganisms (bacteria, fungi, and viruses) and decomposing microbial antibiotic resistance genes and viral nucleic acids under light. The nuclease-mimetic and photocatalytic mechanisms of the PIL-P-Ce are elucidated. Co-infection wound models in mice with methicillin-resistant S. aureus and hepatitis B virus demonstrate that PIL-P-Ce integrate the triple effects of cationic polymer, photocatalysis, and nuclease-mimetic activities. As revealed by proteomic analysis, PIL-P-Ce shows minimal phototoxicity to normal tissues. Hence, PIL-P-Ce has potential as a "green" wound dressing to curb the spread of drug-resistant bacteria and viruses in clinical settings.
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