自愈水凝胶
化学
生物相容性
壳聚糖
伤口愈合
抗菌活性
苯硼酸
细菌纤维素
伤口敷料
铵
伤口闭合
抗菌剂
高分子化学
核化学
生物材料
抗真菌
生物医学工程
金黄色葡萄球菌
脚手架
组合化学
黑曲霉
伤口护理
作者
Y M Zhang,Wensi Jiang,Yuqian Liu,Yang Huang,Chao Liu,Huining Xiao,Farzad Seidi
标识
DOI:10.1021/acsapm.6c00119
摘要
Injectable self-healing hydrogels with intrinsic antibacterial properties represent a promising advancement for wound management. This study presents a natural-based hydrogel system for full-thickness wound healing, fabricated via the hybridization of quaternary ammonium cellulose phenylboronic acid (QAC-PBA) with quaternary ammonium glycol chitosan (QGCS) and the in situ encapsulation of berberine (BBR). The quaternary ammonium groups endow intrinsic antibacterial properties, and the dynamic boronate esters confer self-healing and injectable properties to the hydrogel. Additionally, the release of BBR provides an additional antibacterial mechanism by targeting possible wound sites that are not in direct contact with the hydrogel. The hydrogel demonstrated a strong antibacterial effect (up to 94.1% against E. coli and 99.8% against S. aureus ), fast self-healing, injectability, and high biocompatibility (>100% viability against NIH3T3 cells). In a full-thickness wound model, the hydrogel dressing achieved 95% wound closure in 14 days compared to 89% for the Tegaderm film control.
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