Wang Chuhan, Yu Dingyi, Liu Wen, Zhu Xiang, Zhang Hanzhe, Zheng Shuang, Chen Jingdi
Marine College, Shandong University, Weihai 264209, China.
Antioxidants (Basel). 2025 Jun 26;14(7):785. doi: 10.3390/antiox14070785.
Infectious wounds pose formidable clinical challenges due to hypoxia, exacerbated inflammation, and persistent microbial colonization. To address this, we developed a bioinspired multifunctional hydrogel (PTDPs) through the in situ freeze-thaw co-assembly of polyvinyl alcohol (PVA), tea polyphenols (TP), polydopamine (PDA), and marine-derived self-assembling peptides (AAPs). The resultant PTDP hydrogel formed an intricate hydrogen-bonded network that enhanced mechanical robustness and substrate adhesion. TP and PDA synergistically confer potent antioxidant properties: TP scavenges radicals via phenolic hydroxyl groups while PDA enhances responsiveness to diverse radicals in hypoxic environments. Integrated with AAPs' pro-regenerative functions and PDA's broad-spectrum antimicrobial efficacy, this system generates therapeutic synergy. Characterization revealed outstanding physicochemical properties including tunable plasticity, high swelling ratios, and sustained hydration retention. In vitro studies demonstrated potent antioxidant activity, efficient inhibition of and proliferation, and cytocompatibility facilitating endothelial cell migration/proliferation. In murine full-thickness infected wound models, the PTDP hydrogel significantly accelerated wound closure, enhanced neovascularization, and improved collagen deposition, underscoring its potential as an innovative therapeutic platform for infected and chronic wounds with strong translational prospects.
由于缺氧、炎症加剧和微生物持续定植,感染性伤口带来了严峻的临床挑战。为了解决这一问题,我们通过聚乙烯醇(PVA)、茶多酚(TP)、聚多巴胺(PDA)和海洋来源的自组装肽(AAPs)的原位冻融共组装,开发了一种受生物启发的多功能水凝胶(PTDPs)。所得的PTDP水凝胶形成了一个复杂的氢键网络,增强了机械强度和底物粘附力。TP和PDA协同赋予强大的抗氧化性能:TP通过酚羟基清除自由基,而PDA增强了在缺氧环境中对多种自由基的反应性。该系统结合了AAPs的促再生功能和PDA的广谱抗菌功效,产生了治疗协同作用。表征显示出优异的物理化学性质,包括可调可塑性、高溶胀率和持续的水分保留。体外研究表明,该水凝胶具有强大的抗氧化活性、有效抑制 和 增殖的能力,以及促进内皮细胞迁移/增殖的细胞相容性。在小鼠全层感染伤口模型中,PTDP水凝胶显著加速了伤口闭合,增强了新血管形成,并改善了胶原蛋白沉积,突显了其作为具有强大转化前景的感染性和慢性伤口创新治疗平台的潜力。