间充质干细胞
伤口愈合
小泡
自愈水凝胶
自愈
细胞外
细胞
细胞外小泡
纳米技术
生物医学工程
细胞生物学
材料科学
医学
化学
免疫学
生物
病理
膜
生物化学
高分子化学
替代医学
作者
Xujing Chen,Xiang Wang,Mingzhu He,Jingjing Kang,Jason Gu,Yongchun Wei,Jingqi Li,Bowei Li,Xiaoqin Hong,Xiang Mao,Dingbin Liu,Hong Cai
标识
DOI:10.1002/adhm.202500980
摘要
Wound healing represents a major clinical concern, disrupted by cellular dysfunction due to infection, metabolic imbalance, and immune response, resulting in physical and economic burden to the patients. Despite the widespread recognition of mesenchymal stem cell-derived extracellular vesicles (MSC-EVs) in wound healing research, ensuring their release and retention at the wound site and maximizing their therapeutic efficacy remain significant challenges. To address these issues, a self-adaptive multifunctional hydrogel is introduced that allows the self-adaptive release of MSC-EVs at the wound sites. This approach prevents the rapid clearance of MSC-EVs, enabling them to effectively activate wound healing signaling pathways and promote angiogenesis, cell migration, proliferation, and re-epithelialization. Moreover, the incorporation of gallic acid (GA) endows the hydrogel with antibacterial, anti-inflammatory, and antioxidant properties, which synergistically enhance the reparative effects of MSC-EVs. The potential of the MSC-EV-embedded multifunctional hydrogel is evaluated in a methicillin-resistant Staphylococcus aureus (MRSA)-infected full-thickness wound mouse model, demonstrating its high performance in accelerating the healing of infected complex wounds.
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