Yang Xiao, Zhang Wei, Qin Xuezhi, Cui Miaomiao, Guo Yunting, Wang Ting, Wang Kaiqiang, Shi Zhenqiang, Zhang Chao, Li Wanbo, Wang Zuankai
Department of Mechanical Engineering, City University of Hong Kong, Kowloon, Hong Kong 999077, China.
Hong Kong Centre for Cerebro-Caradiovasular Health Engineering (COCHE), Shatin, Hong Kong 999077, China.
Biomimetics (Basel). 2022 Jul 4;7(3):88. doi: 10.3390/biomimetics7030088.
Surface bacterial fouling has become an urgent global challenge that calls for resilient solutions. Despite the effectiveness in combating bacterial invasion, antibiotics are susceptible to causing microbial antibiotic resistance that threatens human health and compromises the medication efficacy. In nature, many organisms have evolved a myriad of surfaces with specific physicochemical properties to combat bacteria in diverse environments, providing important inspirations for implementing bioinspired approaches. This review highlights representative natural antibacterial surfaces and discusses their corresponding mechanisms, including repelling adherent bacteria through tailoring surface wettability and mechanically killing bacteria via engineering surface textures. Following this, we present the recent progress in bioinspired active and passive antibacterial strategies. Finally, the biomedical applications and the prospects of these antibacterial surfaces are discussed.
表面细菌污染已成为一项紧迫的全球挑战,需要有弹性的解决方案。尽管抗生素在对抗细菌入侵方面有效,但它们容易导致微生物产生抗生素耐药性,这对人类健康构成威胁并降低药物疗效。在自然界中,许多生物已经进化出无数具有特定物理化学性质的表面,以在不同环境中对抗细菌,为实施仿生方法提供了重要灵感。本综述重点介绍了具有代表性的天然抗菌表面,并讨论了它们相应的机制,包括通过调整表面润湿性排斥附着的细菌以及通过设计表面纹理机械杀灭细菌。在此之后,我们介绍了仿生主动和被动抗菌策略的最新进展。最后,讨论了这些抗菌表面的生物医学应用和前景。