Cobalt doped Prussian blue modified hollow polydopamine for enhanced antibacterial therapy

Give the emergence of drug resistance in bacteria resulting from antibiotic misuse, there is an urgent need for research and application of novel antibacterial approaches. In recent years, nanoparticles (NPs) have garnered significant attention due to their potential to disrupt bacteria cellular str...

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Veröffentlicht in:Nanotechnology 2024-06, Vol.35 (36)
Hauptverfasser: Zhao, Qiyao, Zhou, Yifan, Zhang, Qin, Qu, Xiaomeng, Jiang, Yu, Wu, Shilong, Zhang, Meixuan, Zhao, Qi, Qiang, Qingwang, Li, Jian, Li, Yanyan
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Sprache:eng
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Zusammenfassung:Give the emergence of drug resistance in bacteria resulting from antibiotic misuse, there is an urgent need for research and application of novel antibacterial approaches. In recent years, nanoparticles (NPs) have garnered significant attention due to their potential to disrupt bacteria cellular structure through loading drugs and special mechanisms, thus rendering them inactive. In this study, the surface of hollow polydopamine (HPDA) NPs was utilized for the growth of Prussian blue (PB), resulting in the formation of HPDA-PB NPs. Incorporation of Co element during the preparation process led to partial doping of PB with Co ions. The performance test results demonstrated that the HPDA-PB NPs exhibited superior photothermal conversion efficiency and peroxidase-like activity compared to PB NPs. HPDA-PB NPs have the ability to catalyze the formation of hydroxyl radicals from H O in a weakly acidic environment. Due to the tiny PB particles on the surface and the presence of Co doping, they have strong broad-spectrum antibacterial properties. Both and evaluations confirm their efficacy against various bacterial strains, particularly , and their potential to promote wound healing, making them a promising candidate for advanced wound care and antimicrobial applications.
ISSN:0957-4484
1361-6528
1361-6528
DOI:10.1088/1361-6528/ad53d2