自愈水凝胶
抗菌剂
伤口愈合
化学
材料科学
抗菌活性
生物相容性材料
细菌
纳米技术
微生物学
生物医学工程
医学
生物
免疫学
高分子化学
有机化学
遗传学
作者
Weiqiang Wang,Fengjiao Chu,Weifeng Zhang,Tingting Xiao,Jingjing Teng,Yan Wang,Bo He,Binghui Ge,Jiajia Gao,Honghua Ge
标识
DOI:10.1002/adhm.202400047
摘要
The presence of multidrug-resistant bacteria has challenged the clinical treatment of bacterial infection. There is a real need for the development of novel biocompatible materials with broad-spectrum antimicrobial activities. Antimicrobial hydrogels show great potential in infected wound healing but are still being challenged. Herein, broad-spectrum antibacterial and mechanically tunable amyloid-based hydrogels based on self-assembly and local mineralization of silver nanoparticles are reported. The mineralized hydrogels are biocompatible and have the advantages of sustained release of silver, prolonged antimicrobial effect, and improved adhesion capacity. Moreover, the mineralized hydrogels display a significant antimicrobial effect against both Gram-positive and Gram-negative bacteria in cells and mice by inducing membrane damage and reactive oxygen species toxicity in bacteria. In addition, the mineralized hydrogels can rapidly accelerate wound healing by the synergy between their antibacterial activity and intrinsic improvement for cell proliferation and migration. This study provides a modular approach to developing a multifunctional protein hydrogel platform based on biomolecule-coordinated self-assembly for a wide range of biomedical applications.
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