The emergence of drug-resistant bacteria due to excessive antibiotic use has drawn increasing attention to inorganic nanoparticles for their broad-spectrum antibacterial properties. Here, a "green" strategy for the simultaneous inâsitu synthesis of silver nanoparticles (AgNPs) during the photocrosslinking process of casein hydrogels is described. The inâsitu photoactivated biomineralization of AgNPs provides noticeable stability and antibacterial activity, with high photothermal effect during a sequential near-infrared laser activation. The milk-derived casein is screened out due to its great biomineralization capability and wound healing activity. Casein-AgNP hydrogel dressing shows low swelling, good mechanical properties, and nice biocompatibility. In animal experiments, casein-AgNP hydrogel accelerates wound repair and tissue regeneration after bacterial infection by regulating immune response. Our work shows that sequential photoactivation served as a promising strategy for antiinfectious wound treatment, and casein hydrogel stood as a potential candidate for inâsitu biomineralization.
Milk-Derived Injectable Wound Dressing with Sequential Photoactivatable Antibacterial Property through In Situ Biomineralization.
通过原位生物矿化作用实现具有顺序光激活抗菌特性的牛奶衍生可注射伤口敷料
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作者:Zhu Qinchao, Zhou Xuhao, Wang Zhidan, Ren Daxi, Ren Tanchen
| 期刊: | Small Science | 影响因子: | 8.300 |
| 时间: | 2025 | 起止号: | 2025 Jun 23; 5(9):2500026 |
| doi: | 10.1002/smsc.202500026 | 研究方向: | 微生物学 |
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