伤口愈合
生物相容性
光热治疗
血管生成
化学
巨噬细胞极化
炎症
金黄色葡萄球菌
生物医学工程
肉芽组织
纳米技术
再生(生物学)
光热效应
细胞生物学
伤口闭合
慢性伤口
材料科学
生物物理学
伤口护理
细胞毒性
生物膜
抗菌剂
新生血管
纳米笼
微生物学
间质细胞
表皮葡萄球菌
膜
成纤维细胞
类有机物
植入
作者
Daniel Rybak,Xing Li,Alicja Kosik‐Kozioł,Zuzanna J. Krysiak,Paweł Nakielski,Magdalena Bartolewska,Katarzyna Zawadzka,Michał Pruchniewski,Anna Zakrzewska,Mateusz Wierzbicki,Massimiliano Lanzi,Yunlong Yu,Filippo Pierini
出处
期刊:Small
[Wiley]
日期:2026-08-22
摘要
ABSTRACT The human skin is highly susceptible to bacterial infections and inflammation when its integrity is disrupted. Treatment of infected wounds is a big challenge in modern medicine, and rising antibiotic resistance motivates the development of antibiotic‐free therapies. Here, we present a stimuli‐responsive wound dressing that integrates carboxylated eggshell membrane (ESM) with electrosprayed tannic acid/iron (TAFe) particles trapped between electrospun Poly‐L‐lactide‐caprolactone (PLCL) layers and precisely laser‐structured to increase porosity and fit the wound size. The TAFe exhibits stable photothermal conversion and antioxidant activity, eradicating more than 99.5% of Staphylococcus aureus ( S. aureus ) and Escherichia coli ( E. coli ), while maintaining high biocompatibility in vitro. In an infected rat model, the sandwich‐like ESMmod/PLCL/TAFe dressing accelerated closure and achieved near‐complete healing, with residual wound area <1% by day 14. Analysis shows that the material promotes M2‐mediated reparative microenvironment, which, in consequence, suppresses TNFα and IL‐6, a pro‐inflammatory cytokines, and enhances angiogenesis through increased CD31 and VEGF levels. Moreover, a more organized collagen structure and less scarring were found in the wound bed. Importantly, the material is partially derived from waste, aligning with circular economy principles and reducing resource burden. The versatile composite offers an antibiotic‐free strategy that disinfects, modulates inflammation, and promotes regeneration of infected wounds.
科研通智能强力驱动
Strongly Powered by AbleSci AI