微泡
外体
伤口愈合
化学
活性氧
细胞生物学
小RNA
医学
生物化学
生物
免疫学
基因
作者
Hanxiao Sun,Yang Zou,Zhengtai Chen,Yan He,Kai Ye,Huan Liu,Lihong Qiu,Yufan Zhang,Yuexue Mai,Xinghong Chen,Zhengwei Mao,Wei Wang,YI Cheng-gang
标识
DOI:10.1002/advs.202413408
摘要
Abstract Cuproptosis, caused by an intracellular overload of copper (Cu) ions and overexpression of ferredoxin 1 (FDX1), is identified for its regulatory role in the skin wound healing process. This study verifies the presence of cuproptosis in skin wound beds and reactive oxygen species‐induced cells model. To address the two pathways leading to cell cuproptosis, a nanodrug‐engineered exosomes is proposed. A Cu‐chelator (Clioquinol, CQ) polydopamine (PDA)‐modified stem cell exosome loaded with siRNA‐FDX1, named EXO siFDX1‐PDA@CQ , is designed to efficiently inhibit the two cuproptosis pathways. The functionalized exosomes are loaded into an injectable hydrogel and applied to treat diabetic wounds in mice and acute skin wounds in pigs. The local and controlled release of EXO siFDX1‐PDA@CQ ensures the retention of the therapeutic agent at wound beds, effectively promoting wound healing. The strategy of engineered exosomes with functional nanoparticles (NPs) proposed in this study offers an efficient and scalable new approach for regulating cuproptosis.
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