姜黄素
伤口愈合
伤口敷料
纳米颗粒
生物相容性
壳聚糖
极限抗拉强度
材料科学
自愈水凝胶
生物医学工程
京尼平
肌成纤维细胞
促炎细胞因子
肿胀 的
透明质酸
纳米技术
化学
凝血
粘附
体外
作者
Jingjing Fu,Shengtao Mei,Q. H. Zhang,Xiang'en Fu,Jianqiao Zhong,Jie Deng,Q. Zhang,Xiao‐Yang Bai,Fan‐yu He,Junxin Wu,Yuewen Chen
标识
DOI:10.1002/adhm.202500554
摘要
Multifunctional hydrogels have aroused great interest in accelerating wound healing. In this study, a hydrogel dressing with antioxidant, antibacterial, anti-inflammatory, and wound healing properties is developed using xylose (Xy) glycated Chinese giant salamander collagen (CGSPXy), curcumin (Cur), sodium alginate (SA), and chitosan (CS). Specifically, the CGSP/CGSPXy-Cur nanoparticle is mixed with SA through hydrogen bonding interactions to form a hydrogel framework. Subsequently, the CGSP/CGSPXy-Cur-SA is immersed in a solution containing Ca2⁺ and CS, forming an ion-crosslinked semi-interpenetrating double-network hydrogel. Notably, CGSPXy synergized with Cur reduced the swelling ratio while enhancing the thermal stability, rheological properties, adhesion performance, and tensile strength of hydrogels. In vitro experiments demonstrated that hydrogels constructed with CGSPXy-Cur nanoparticles exhibited sustained Cur release, along with excellent blood compatibility, clotting properties, antioxidant, and antibacterial activity. Also, CGSPXy synergized with Cur has been proven to effectively promote wound healing by promoting collagen deposition, new blood vessels, myofibroblast generation, and reducing the production of proinflammatory factors (TNF-α and IL-6). This study provided a promising strategy for collagen-based hydrogel as a sustainable solution for wound care.
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