Antibacterial, anti-inflammatory, rapid hemostasis, and accelerated repair by multifunctional metal–organic frameworks fibrous scaffolds for diabetic wounds

伤口愈合 止血 炎症 化学 再生(生物学) 医学 细胞生物学 外科 免疫学 生物
作者
Ning Wang,Wencong Liu,Guodong Chai,Shuwen Sun,Qiteng Ding,Zhiqiang Cheng,Xinglong Liu,Yingchun Zhao,Ting Zhao,Yue Wang,Jiali Yang,Bo Hong,Chuanbo Ding
出处
期刊:Chemical Engineering Journal [Elsevier BV]
卷期号:477: 147262-147262 被引量:20
标识
DOI:10.1016/j.cej.2023.147262
摘要

Excessive inflammation, bacterial infection, persistent bleeding, and wound exudate accumulation are common in diabetic wounds, impeding cell proliferation and disturbing tissue remodeling, making it difficult for diabetic wounds to heal. The rapid hemostasis and reduction of bacterial infection, as well as the excessive infiltration of inflammatory factors, serve as key strategies for diabetic wound healing. In this study, Taxifolin (TAX) was loaded onto cyclodextrin metal–organic frameworks (CD-MOFs), which were subsequently loaded into polycaprolactone (PCL) scaffolds via electrostatic spinning to construct multifunctional electrospun fibrous membranes (EFMs) with antimicrobial, anti-inflammatory, hemostatic, and wound exudate-absorbent properties. The resulting EFMs exhibited a hydrophilic surface, which facilitated wound adhesion and enhanced its hemostatic properties. By aggregating the wound exudate and triggering a cascade release of TAX, bacterial infection in the wound was reduced, decreasing the expression of inflammatory factors. This also promoted collagen deposition, vascular regeneration, and myofibroblast contraction and migration and facilitated the remodeling and repair of the wound tissue. These results demonstrated that designed fibrous scaffolds could effectively accelerate the repair process of diabetic mice, providing a new strategy for the treatment of diabetic wounds.
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