Ge Haojie, Wang Min, Wei Xiaolong, Chen Xu-Lin, Wang Xianwen
Department of Burns, The First Hospital Affiliated of Anhui Medical University, Anhui Medical University, Hefei, Anhui, 230032, P. R. China.
School of Biomedical Engineering, Anhui Medical University, Hefei, 230032, P. R. China.
Small. 2025 Feb;21(8):e2407195. doi: 10.1002/smll.202407195. Epub 2025 Jan 5.
Bacterial infections are a significant obstacle to the healing of acute and chronic wounds, such as diabetic ulcers and burn injuries. Traditional antibiotics are the primary treatment for bacterial infections, but they present issues such as antibiotic resistance, limited efficacy, and potential side effects. This challenge leads to the exploration of nanozymes as alternative therapeutic agents. Nanozymes are nanomaterials with enzyme-like activities. Owing to their low production costs, high stability, scalability, and multifunctionality, nanozymes have emerged as a prominent focus in antimicrobial research. Among various types of nanozymes, metal-based nanozymes offer several benefits, including broad-spectrum antimicrobial activity and robust catalytic properties. Specifically, copper-based nanozymes (CuNZs) have shown considerable potential in promoting wound healing. They exhibit strong antimicrobial effects, reduce inflammation, and enhance tissue regeneration, making them highly advantageous for use in wound care. This review describes the dual functions of CuNZs in combating infection and facilitating wound repair. Recent advancements in the design and synthesis of CuNZs, evaluating their antimicrobial efficacy, healing promotion, and biosafety both in vitro and in vivo on the basis of their core components, are critically important.
细菌感染是急性和慢性伤口愈合的重大障碍,如糖尿病溃疡和烧伤。传统抗生素是细菌感染的主要治疗方法,但它们存在抗生素耐药性、疗效有限和潜在副作用等问题。这一挑战促使人们探索纳米酶作为替代治疗剂。纳米酶是具有类酶活性的纳米材料。由于其生产成本低、稳定性高、可扩展性强和多功能性,纳米酶已成为抗菌研究的一个突出重点。在各种类型的纳米酶中,金属基纳米酶具有多种优势,包括广谱抗菌活性和强大的催化性能。具体而言,铜基纳米酶(CuNZs)在促进伤口愈合方面显示出相当大的潜力。它们具有强大的抗菌作用,减轻炎症,并促进组织再生,使其在伤口护理中具有高度优势。本综述描述了铜基纳米酶在抗感染和促进伤口修复方面的双重功能。基于其核心成分,在体外和体内评估铜基纳米酶的抗菌效果、愈合促进作用和生物安全性,对于其设计和合成的最新进展至关重要。