Fang Meng, Lin Liping, Zheng Muyue, Liu Wei, Lin Rongguang
Department of Applied Chemistry, College of Life Sciences, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.
Department of Bioinformatics, College of Life Sciences, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.
J Mater Chem B. 2023 Oct 11;11(39):9386-9403. doi: 10.1039/d3tb01543b.
Bacterial infections and inflammation pose a severe threat to human health and the social economy. The existence of super-bacteria and the increasingly severe phenomenon of antibiotic resistance highlight the development of new antibacterial agents. Due to low cytotoxicity, high biocompatibility, and different antibacterial mechanisms from those for antibiotics, functionalized carbon dots (FCDs) promise a new platform for the treatment of bacterial infectious diseases. However, few articles have systematically sorted out the available antibacterial mechanisms for FCDs and their application in the treatment of bacterial inflammation. This review focuses on the available antibacterial mechanisms for FCDs, including covalent and non-covalent interactions, reactive oxygen species, photothermal therapy, and size effect. Meanwhile, the design of antibacterial FCDs is introduced, including surface modification, doping, and combination with other nanomaterials. Furthermore, this review specifically concentrates on the research advances of antibacterial FCDs in the treatment of bacterial inflammation. Finally, the advantages and challenges of applying FCDs in practical antimicrobial applications are discussed.
细菌感染和炎症对人类健康和社会经济构成严重威胁。超级细菌的存在以及抗生素耐药性日益严重的现象凸显了新型抗菌剂的研发需求。由于具有低细胞毒性、高生物相容性以及与抗生素不同的抗菌机制,功能化碳点有望成为治疗细菌感染性疾病的新平台。然而,很少有文章系统地梳理功能化碳点可用的抗菌机制及其在治疗细菌炎症中的应用。本综述聚焦于功能化碳点可用的抗菌机制,包括共价和非共价相互作用、活性氧、光热疗法和尺寸效应。同时,介绍了抗菌功能化碳点的设计,包括表面修饰、掺杂以及与其他纳米材料的结合。此外,本综述特别关注抗菌功能化碳点在治疗细菌炎症方面的研究进展。最后,讨论了功能化碳点在实际抗菌应用中的优势和挑战。