Yani Zou, Yingao Jiao, Jiehao Zhou, Helin Xu, Qiqi Liu, Dengyao Gao, Yan Gao, Yihong Yang, Yanlei Liu, Hongbo Liu
Infected skin wounds demand integrated strategies for rapid bacterial clearance and tissue repair. We developed a β-glucan-gelatin-tannic acid-Cu9S8 (CSGGT) composite hydrogel combining NIR-II photothermal therapy (1064 nm) with a bioactive physical network. The hydrogel exhibited self-healing, injectability, rapid swelling, and excellent biocompatibility. Cu9S8 nanoparticles (photothermal conversion efficiency: 43.87%) enabled efficient bacterial killing (≥2.5-log reduction for S. aureus and E. coli) under laser irradiation. In an S. aureus-infected murine full-thickness wound model, CSGGT + NIR achieved near-complete closure by day 12, with robust re-epithelialization, regenerated skin appendages, dense collagen deposition, and reduced inflammatory infiltration, significantly outperforming all controls. No systemic toxicity was observed. This work presents a combined therapeutic platform that merges immediate photothermal antibacterial action with sustained pro-healing microenvironment support, offering a promising non-antibiotic solution for infected wound management.