Hao Zhang, Xixi Jing, Juanjie Duan, Shiyao Wang, Zewei Wang, Renwu Zhou, Tianqi Zhang, Rusen Zhou, Dingxin Liu, Jishen Zhang, Mei'ou Liu, Yuan Zhao, Li Guo, Mingzhe Rong, Zijun Guo
This study presents a thermosensitive Pluronic F127 (PF127) hydrogel system for sustained delivery of cold atmospheric plasma (CAP)-generated reactive oxygen and nitrogen species (RONS). Gas-liquid interfacial reactions during plasma treatment enable substantial aqueous RONS loading, yielding the plasma-activated PF127 hydrogel (PAHPF127) with potent antibacterial efficacy. Complete inactivation of 1 × 106 CFU Staphylococcus aureus and Escherichia coli was achieved at 37 °C, with bactericidal activity retained beyond 8 h at physiological temperature and 7 days at 4 °C. PAHPF127 further demonstrated biocompatibility and regenerative capacity, promoting HaCaT migration and 89% in vitro wound closure within 48 h. In a Staphylococcus aureus-infected rat wound model, PAHPF127 accelerated wound contraction, suppressed bacterial colonization, and enhanced re-epithelialization with collagen deposition. These findings establish PAHPF127 as a stable, antimicrobial, and pro-regenerative material for wound care.