Key Laboratory of Medical Electrophysiology, Ministry of Education, Institute of Cardiovascular Research of Southwest Medical University, 646000, Luzhou, China.
Institute of Pharmaceutics, College of Pharmaceutical Sciences, Zhejiang University, 310058, Hangzhou, China.
J Nanobiotechnology. 2022 Jul 16;20(1):328. doi: 10.1186/s12951-022-01538-y.
Combating bacterial infections is one of the most important applications of nanomedicine. In the past two decades, significant efforts have been committed to tune physicochemical properties of nanomaterials for the development of various novel nanoantibiotics. Among which, metal nanoclusters (NCs) with well-defined ultrasmall size and adjustable surface chemistry are emerging as the next-generation high performance nanoantibiotics. Metal NCs can penetrate bacterial cell envelope more easily than conventional nanomaterials due to their ultrasmall size. Meanwhile, the abundant active sites of the metal NCs help to catalyze the bacterial intracellular biochemical processes, resulting in enhanced antibacterial properties. In this review, we discuss the recent developments in metal NCs as a new generation of antimicrobial agents. Based on a brief introduction to the characteristics of metal NCs, we highlight the general working mechanisms by which metal NCs combating the bacterial infections. We also emphasize central roles of core size, element composition, oxidation state, and surface chemistry of metal NCs in their antimicrobial efficacy. Finally, we present a perspective on the remaining challenges and future developments of metal NCs for antibacterial therapeutics.
防治细菌感染是纳米医学最重要的应用之一。在过去的二十年中,人们投入了大量的努力来调整纳米材料的物理化学性质,以开发各种新型纳米抗生素。其中,具有明确超小尺寸和可调表面化学性质的金属纳米团簇(NCs)作为新一代高性能纳米抗生素而崭露头角。由于其超小尺寸,金属 NCs 比传统纳米材料更容易穿透细菌细胞包膜。同时,金属 NCs 丰富的活性位点有助于催化细菌细胞内的生化过程,从而增强其抗菌性能。在这篇综述中,我们讨论了金属 NCs 作为新一代抗菌剂的最新进展。在简要介绍金属 NCs 的特性的基础上,我们重点介绍了金属 NCs 防治细菌感染的一般作用机制。我们还强调了金属 NCs 的核心尺寸、元素组成、氧化态和表面化学在其抗菌功效中的核心作用。最后,我们对金属 NCs 用于抗菌治疗的剩余挑战和未来发展提出了展望。