生物相容性
一氧化氮
伤口愈合
材料科学
抗菌活性
壳聚糖
硝普钠
自愈水凝胶
体内
化学
生物医学工程
核化学
纳米技术
医学
高分子化学
生物化学
外科
冶金
有机化学
遗传学
生物技术
细菌
生物
作者
Wen Zuo,Kunpeng Wei,Xinyi Zhang,Dongjing Wang,Haoyang Gong,Yanzhuo Zhang,Hui Zhu Wang
出处
期刊:Pharmaceutics
[Multidisciplinary Digital Publishing Institute]
日期:2024-12-22
卷期号:16 (12): 1624-1624
被引量:14
标识
DOI:10.3390/pharmaceutics16121624
摘要
Objectives: To design a multifunctional nanozyme hydrogel with antibacterial, photo-responsive nitric oxide-releasing, and antioxidative properties for promoting the healing of infected wounds. Methods: We first developed ultra-small silver nanoparticles (NPs)-decorated sodium nitroprusside-doped Prussian blue (SNPB) NPs, referred to as SNPB@Ag NPs, which served as a multifunctional nanozyme. Subsequently, this nanozyme, together with geniposide (GE), was incorporated into a thermo-sensitive hydrogel, formulated from Poloxamer 407 and carboxymethyl chitosan, creating a novel antibacterial wound dressing designated as GE/SNPB@Ag hydrogel. The physical properties of a GE/SNPB@Ag hydrogel were systematically investigated. Results: After embedding the nanozyme and GE, the resulting GE/SNPB@Ag hydrogel retains its thermosensitive properties and exhibits sustained release characteristics. In addition to its catalase-like activity, the nanozyme demonstrates high photothermal conversion efficiency, photo-induced nitric oxide release, and antibacterial activity. In addition, the hydrogel exhibits favorable antioxidant properties and high biocompatibility. The results of animal experiments demonstrate that the composite hydrogel combined with laser irradiation is an effective method for promoting infected wound healing. Conclusions: In vitro and in vivo studies indicate that the resulting GE/SNPB@Ag hydrogel holds significant potential for the treatment of infected wounds and for further clinical applications.
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