Intelligence-responsive wettability switch coating on magnesium implants for treating osteoporotic fracture

涂层 活性氧 氧化应激 成骨细胞 骨愈合 材料科学 间充质干细胞 生物医学工程 腐蚀 间质细胞 润湿 氧气 降级(电信) 骨髓 单宁酸 明胶 骨折 冶金 镁合金 化学 牙科 表面改性 骨质疏松症
作者
Guobin Qi,Tianle Ma,Yugang Wang,Kai Chen,Yuheng Yan,Zhanyu Li,Ning Deng,Changchun Tseng,Bin Li,Yufeng Zheng,Zhe Wang
出处
期刊:Nature Communications [Nature Portfolio]
卷期号:17 (1)
标识
DOI:10.1038/s41467-026-72683-3
摘要

Osteoporotic fracture healing is frequently complicated by elevated levels of reactive oxygen species and disrupted bone homeostasis. Biodegradable magnesium alloys are promising orthopedic implants, but rapid degradation in oxidative, acidic osteoporotic microenvironments limits their clinical application. In this study, we develop a reactive oxygen species-responsive hydrogel coating of tannic acid and gelatin methacryloyl on magnesium implants via a metal-phenolic network. We show that this firmly adhering coating significantly decelerates magnesium degradation while scavenging reactive oxygen species on demand. In osteoporotic rat models, we demonstrate that coated implants effectively reduce oxidative stress and facilitate bone healing. Mechanistically, single-cell transcriptomics reveals that the coating activates the nuclear factor erythroid 2-related factor 2 signaling pathway in bone marrow mesenchymal stromal cells and bone marrow-derived macrophages, enhancing osteogenesis while inhibiting osteoclastogenesis. Consequently, this multifunctional coating provides corrosion protection and a targeted therapeutic approach to enhance osteoporotic fracture healing under oxidative stress. Osteoporotic fractures often heal poorly due to high oxidative stress. Here, the authors develop an intelligent responsive hydrogel coating for magnesium implants that decelerates implant degradation, alleviates oxidative stress, and promotes bone regeneration.
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