外体
对偶(语法数字)
领域(数学分析)
生物医学工程
纳米技术
微泡
化学
医学
材料科学
数学
小RNA
生物化学
基因
文学类
数学分析
艺术
作者
Shanguo Zhang,Tianyi Jiang,Depeng Yang,Liang Cao,Miao Li,Ju Tang,Qi Min Gu,An Xu,Li Yu,Hongyuan Jiang
标识
DOI:10.1016/j.mtbio.2025.102383
摘要
Bacterial infection and persistent inflammation severely hinder tissue regeneration; therefore, a synergistic therapeutic strategy that combines antibacterial and pro-healing functions is crucial for the effective treatment of infected wounds. In this study, we construct a self-powered microneedle drug delivery platform based on a Dual-domain engineered exosome (D2-Exo) that integrates antimicrobial and healing-promoting capabilities. The exosome is internally loaded with asiaticoside and surface-modified with an antimicrobial peptide. The self-powered microneedle delivery platform, driven by a triboelectric nanogenerator, enables precise and efficient release of the D2-Exo. In vitro and in vivo experiments show that electrical stimulation significantly enhances exosome release and cellular uptake. The D2-Exo-loaded platform effectively reduces inflammation, inhibits bacterial infection, and promotes granulation tissue formation and collagen deposition, thereby accelerating the healing of infected wounds. This study presents a promising strategy for the intelligent treatment of infected wounds.
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