The naringin/carboxymethyl chitosan/sodium hyaluronate/silk fibroin scaffold facilitates the healing of diabetic wounds by restoring the ROS-related dysfunction of vascularization and macrophage polarization

柚皮苷/羧甲基壳聚糖/透明质酸钠/丝素蛋白支架通过恢复ROS相关的血管化和巨噬细胞极化功能障碍促进糖尿病伤口愈合

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作者:Hao Yang, Hailin Xu, Dongming Lv, Shuting Li, Yanchao Rong, Zhiyong Wang, Peng Wang, Xiaoling Cao, Xiaohui Li, Zhongye Xu, Bing Tang, Jiayuan Zhu, Zhicheng Hu

Abstract

Chronic diabetic wounds remain a globally recognized clinical challenge, which occurs mainly due to the disturbances of wound microenvironmental induced by high concentrations of reactive oxygen species (ROS). Impairments in angiogenesis and inflammation in the wound microenvironment ultimately impede the normal healing process. Therefore, targeting macrophage and vascular endothelial cell dysfunction is a promising therapeutic strategy. In our study, we fabricated artificial composite scaffolds composed of naringin/carboxymethyl chitosan/sodium hyaluronate/silk fibroin (NG/CMCS/HA/SF) to promote wound healing. The NG/CMCS/HA/SF scaffold demonstrated favorable anti-inflammatory, anti-oxidative, and pro-angiogenic properties in both in vitro and in vivo experiments, effectively promoting the healing of diabetic wounds. The positive therapeutic effects observed indicate that the composite scaffolds have great potential in clinical wound healing applications.

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