活性氧
伤口愈合
化学
血管生成
糖尿病足
药理学
再生(生物学)
自愈水凝胶
氧气
糖尿病
光热治疗
硫酸化
氧化应激
细胞迁移
炎症
癌症研究
透明质酸
细胞生物学
葡萄糖氧化酶
糖尿病溃疡
生物化学
NADPH氧化酶
四氧嘧啶
作者
Kaiyue Liu,Rui‐Mei Jin,Mengyu Yang,Yachao Yu,Jingmei Liu,Chenghao Li,Chen Zhang,Hua Zhao,Donghui Zhao,Fangxia Guan,Minghao Yao
摘要
Excessive production of reactive oxygen species (ROS) and bacterial infection are intractable obstacles for wound healing in diabetic foot ulcers. Here, we devised a novel approach using a multifunctional hydrogel to achieve self-cascade glucose depletion and ROS scavenging, thereby modifying the diabetic wound microenvironment. In this study, using polyvinyl alcohol (PVA), borax, oligomeric proanthocyanidins (OPC), and nanozymes (AuPt@PDA), a PVA/Borax/OPC/AuPt@PDA (PBON) hydrogel was prepared by a one-step process. The PBON hydrogel combined with near-infrared (NIR) treatment can match the complicated and changeable microenvironment in the diabetic high-mobility region through glucose depletion, ROS scavenging, photothermal therapy (photothermal conversion 81.9%), and deformation adaptation, thus promoting wound healing close to the hip in diabetic mice through angiogenesis and epidermal regeneration by collagen deposition. This approach provides a simple, safe, and efficient treatment for diabetic wounds in mobile regions.
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