伤口愈合
细胞外小泡
脚手架
体内
生物相容性材料
生物医学工程
化学
伤口敷料
细胞生物学
细胞外基质
干细胞
再生(生物学)
体外
清创术(牙科)
组织工程
细胞外
小泡
组织重塑
自愈水凝胶
组织修复
药物输送
生物材料
作者
Jingjing Kang,Yongmei Yin,Xiang Wang,Jingqi Li,Zhaoyu Wang,Wenshuai Li,Rui Du,Jiaming Chen,Jia Xu,Ying Jiang,Mingzhu Yang,Mingzhu He,Hong Cai,Dingbin Liu
摘要
Stem cell-derived extracellular vesicles (EVs) have emerged as promising therapeutics for wound healing, yet their clinical applications are limited by rapid clearance and poor retention at wound sites. Conventional delivery systems rely on preformed biomaterials and passive release, which cannot adapt to the dynamic wound environments and provide precise temporal control over EVs availability. Here, we present an in situ forming adhesive hydrogel that enables 405 nm light-triggered gelation at the acute wound surfaces directly and near-infrared (NIR) light-stimulated on-demand release of EVs. This hydrogel integrates EVs within a biocompatible polymer matrix, forming a conformal, shape-adaptable scaffold that can seamlessly cover wounds with irregular geometries. In vitro studies demonstrated NIR-responsive EVs release and preserved bioactivity. In vivo experiments using acute wound models (full-thickness excision and deep second-degree burn) showed dramatically accelerated tissue regeneration, enhanced angiogenesis, and reduced scar formation compared with EVs-only or hydrogel-only treatments. Overall, this work introduces a versatile, multifunctional platform for spatiotemporal EVs delivery, offering new strategies for effective wound repair.
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