Xie Lingping, Wu Haoyue, Li Yuanfeng, Shi Linqi, Liu Yong
The People's Hospital of Yuhuan, Taizhou, Zhejiang, 317600, China.
Department of International VIP Dental Clinic, Tianjin Stomatological Hospital, School of Medicine, Nankai University, Tianjin, 300041, China.
Adv Healthc Mater. 2025 Mar;14(8):e2402659. doi: 10.1002/adhm.202402659. Epub 2024 Oct 10.
The World Health Organization has warned that without effective action, deaths from drug-resistant bacteria can exceed 10 million annually, making it the leading cause of death. Conventional antibiotics are becoming less effective due to rapid bacterial drug resistance and slowed new antibiotic development, necessitating new strategies. Recently, materials with catalytic/enzymatic properties, known as nanozymes, have been developed, inspired by natural enzymes essential for bacterial eradication. Unlike recent literature reviews that broadly cover nanozyme design and biomedical applications, this review focuses on the latest advancements in nanozymes for combating bacterial drug resistance, emphasizing their design, structural characteristics, applications in combination therapy, and future prospects. This approach aims to promote nanozyme development for combating bacterial drug resistance, especially towards clinical translation.
世界卫生组织警告称,若不采取有效行动,每年因耐药菌导致的死亡人数可能超过1000万,使其成为主要死因。由于细菌耐药性迅速发展以及新型抗生素研发放缓,传统抗生素的效果越来越差,因此需要新的策略。最近,受根除细菌所必需的天然酶启发,具有催化/酶促特性的材料(即纳米酶)已被开发出来。与近期广泛涵盖纳米酶设计和生物医学应用的文献综述不同,本综述聚焦于纳米酶在对抗细菌耐药性方面的最新进展,重点介绍其设计、结构特征、联合治疗中的应用以及未来前景。这种方法旨在推动纳米酶在对抗细菌耐药性方面的发展,尤其是朝着临床转化方向发展。