伤口愈合
超短脉冲
相(物质)
细胞生物学
化学
医学
生物
免疫学
物理
光学
激光器
有机化学
作者
Fan Zhang,Haijuan Zhang,Shengfu Wang,Mingying Gao,Kui Du,Xinyuan Chen,Lu Yang,Qianqian Hu,Anyu Du,Shenghu Du,Jian Wang,Keqing Shi,Zimiao Chen,Zhuo Li,Zhenglin Li,Jian Xiao
标识
DOI:10.1038/s41467-025-58987-w
摘要
Achieving rapid and scar-free wound repair is a key goal in the field of regenerative medicine. Herein, a dynamically Schiff base-crosslinked hydrogel (F/R gel) with phase-adaptive regulating functions is constructed to integratedly promote rapid re-epithelization with suppressed scars on chronic infected wounds. Specifically, the gel effectively eliminates multidrug-resistant bacterial biofilm at infection stage via antimicrobial activity of ε-polylysine firstly dissociated from hydrogel matrix in infectious microenvironment, and interrupts the severe oxidative stress-inflammation cycle at wound site by the released ceria nanozyme, thus stimulating a pro-regenerative environment to ensure tissue repair. Subsequently, fibroblast growth factor/c-Jun siRNA co-loaded microcapsules gradually disintegrate to release drugs, facilitating neoangiogenesis and cell proliferation but simultaneously blocking c-Jun overexpression for fibrotic scar suppression. Notably, the F/R gel facilitates normal-like skin regeneration with no perceptible scars formed on infected male mouse wound and female rabbit ear wound models. Our work offers a promising regenerative strategy emphasizing immunomodulatory and fibroblast subtype modulation for scarless wound repair.
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