Department of Burns, The First Affiliated Hospital of Anhui Medical University, Hefei, 230032, China.
School of Biomedical Engineering, Research and Engineering Center of Biomedical Materials, Anhui Medical University, Hefei, 230032, China.
Adv Healthc Mater. 2024 Mar;13(8):e2302566. doi: 10.1002/adhm.202302566. Epub 2023 Nov 20.
Effectively controlling bacterial infection, reducing the inflammation and promoting vascular regeneration are all essential strategies for wound repair. Nanozyme technology has potential applications in the treatment of infections because its non-antibiotic dependent, topical and noninvasive nature. In wound management, copper-based nanozymes have emerged as viable alternatives to antibiotics. In this study, an ultrasmall cupric enzyme with high enzymatic activity is synthesized and added to a nontoxic, self-healing, injectable cationic guar gum (CG) hydrogel network. The nanozyme exhibits remarkable antioxidant properties under neutral conditions, effectively scavenging reactive nitrogen and oxygen species (RNOS). Under acidic conditions, Cu NDs have peroxide (POD) enzyme-like activity, which allows them to eliminate hydrogen peroxides and produce free radicals locally. Antibacterial experiments show that they can kill bacteria and remove biofilms. It reveals that low concentrations of Cu ND/CG decrease the expression of the inflammatory factors in cells and tissues, effectively controlling inflammatory responses. Cu ND/CG hydrogels also inhibit HIF-1α and promote VEGF expression in the wound with the ability to promote vascular regeneration. In vivo safety assessments reveal a favorable biosafety profile. Cu ND/CG hydrogels offer a promising solution for treating acute and infected wounds, highlighting the potential of innovative nanomaterials in wound healing.
有效控制细菌感染、减轻炎症和促进血管再生都是创面修复的重要策略。纳米酶技术因其非抗生素依赖性、局部和非侵入性的特点,在感染治疗方面具有应用潜力。在创面管理中,基于铜的纳米酶已经成为抗生素的可行替代品。在这项研究中,我们合成了一种具有高酶活性的超小铜酶,并将其添加到一种无毒、自修复、可注射的阳离子瓜尔胶(CG)水凝胶网络中。纳米酶在中性条件下表现出显著的抗氧化特性,能够有效清除活性氮和氧自由基(RNOS)。在酸性条件下,CuND 具有过氧化物酶(POD)样活性,能够消除过氧化氢并局部产生自由基。抗菌实验表明,它们可以杀死细菌并去除生物膜。研究结果表明,低浓度的 CuND/CG 降低了细胞和组织中炎症因子的表达,有效控制了炎症反应。CuND/CG 水凝胶还能抑制 HIF-1α 的表达,并促进 VEGF 的表达,从而促进血管再生。体内安全性评估显示出良好的生物安全性。CuND/CG 水凝胶为治疗急性和感染性创面提供了一种有前途的解决方案,突出了创新纳米材料在创面愈合中的潜力。