Li Xi, Wu Biao, Chen Hao, Nan Kaihui, Jin Yingying, Sun Lin, Wang Bailiang
School of Ophthalmology & Optometry, Eye Hospital, Wenzhou Medical University, Wenzhou, 325027, China.
J Mater Chem B. 2018 Jul 14;6(26):4274-4292. doi: 10.1039/c8tb01245h. Epub 2018 Jun 22.
Since their development over 70 years, antibiotics are still the most effective strategy to treat bacterial biofilms and infections. However, the overuse of antibiotics in human healthcare and industrial applications has resulted in the development of serious antibiotic-resistant bacteria. Therefore, alternative ways to prevent bacteria attachment and biofilm formation are urgently needed. Recently, mediated biofilm formation processes and smart antibacterial surfaces have emerged as promising strategies to prevent and treat bacterial infections. This review discusses the recent progress in biofilm interference and smart antibacterial surfaces. Smart antibacterial and anti-biofilm surfaces should be responsive to the bacterial infection environment, switchable between various antibacterial functions and have a special bio-inspired structure and function. The major topics discussed are: (i) smart anti-biofilm surfaces via the prevention of biofilm formation or promoting mature biofilm dissolution, (ii) smart materials for reversible killing and/or release of bacteria, (iii) smart surfaces responsive to bacterial infection microenvironments or external stimuli and (iv) bio-inspired surfaces with antifouling and bactericidal properties.
自70多年前抗生素问世以来,它们仍然是治疗细菌生物膜和感染最有效的策略。然而,抗生素在人类医疗保健和工业应用中的过度使用已导致产生了严重的耐药细菌。因此,迫切需要预防细菌附着和生物膜形成的替代方法。最近,介导的生物膜形成过程和智能抗菌表面已成为预防和治疗细菌感染的有前景的策略。本综述讨论了生物膜干扰和智能抗菌表面的最新进展。智能抗菌和抗生物膜表面应能响应细菌感染环境,在各种抗菌功能之间切换,并具有特殊的仿生结构和功能。讨论的主要主题包括:(i) 通过防止生物膜形成或促进成熟生物膜溶解的智能抗生物膜表面,(ii) 用于可逆杀灭和/或释放细菌的智能材料,(iii) 对细菌感染微环境或外部刺激有响应的智能表面,以及(iv) 具有防污和杀菌特性的仿生表面。