伤口愈合
血管生成
体内
炎症
金黄色葡萄球菌
化学
微生物学
没食子酸
药理学
材料科学
细菌
癌症研究
医学
免疫学
外科
核化学
生物
遗传学
生物技术
作者
Nanbo Liu,Shuoji Zhu,Yuzhi Deng,Ming Xie,Mingyi Zhao,Tucheng Sun,Changjiang Yu,Ying Zhong,Rui Guo,Keluo Cheng,Dehua Chang,Ping Zhu
标识
DOI:10.1016/j.bioactmat.2022.12.009
摘要
Damaged skin cannot prevent harmful bacteria from invading tissues, causing infected wounds or even severe tissue damage. In this study, we developed a controlled-release antibacterial composite hydrogel system that can promote wound angiogenesis and inhibit inflammation by sustained releasing Cu-Epigallocatechin-3-gallate (Cu-EGCG) nano-capsules. The prepared SilMA/HAMA/Cu-EGCG hydrogel showed an obvious inhibitory effect on Escherichia coli (E. coli) and Staphylococcus aureus (S. aureus). It could also promote the proliferation and migration of L929 fibroblasts. In vivo full-thickness infected wound healing experiments confirmed the angiogenesis and inflammation regulating effect. Accelerate collagen deposition and wound healing speed were also observed in the SilMA/HAMA/Cu-EGCG hydrogel treated group. The findings of this study show the great potential of this controlled-release antibacterial composite hydrogel in the application of chronic wound healing.
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