College of Materials Science and Engineering, Jilin Institute of Chemical Technology, Jilin, 132022, China.
School of Life Science and Health Engineering, Hebei University of Technology, Xiping Avenue 5340, Beichen District, Tianjin, 300401, China.
Chem Soc Rev. 2022 Aug 15;51(16):7138-7169. doi: 10.1039/d2cs00460g.
Bacteria, as the most abundant living organisms, have always been a threat to human life until the development of antibiotics. However, with the wide use of antibiotics over a long time, bacteria have gradually gained tolerance to antibiotics, further aggravating threat to human beings and environmental safety significantly. In recent decades, new bacteria-killing methods based on metal ions, hyperthermia, free radicals, physical pricks, and the coordination of several multi-mechanisms have attracted increasing attention. Consequently, multiple types of new antibacterial agents have been developed. Among them, metal organic frameworks (MOFs) appear to play an increasingly important role. The unique characteristics of MOFs make them suitable multiple-functional platforms. By selecting the appropriate metastable coordination bonds, MOFs can act as reservoirs and release antibacterial metal ions or organic linkers; by constructing a porous structure, MOFs can act as carriers for multiple types of agents and achieve slow and sustained release; and by designing their composition and the pore structure precisely, MOFs can be endowed with properties to produce heat and free radicals under stimulation. Importantly, in combination with other materials, MOFs can act as a platform to kill bacteria effectively through the synergistic effect of multiple types of mechanisms. In this review, we focus on the recent development of MOF-based antibacterial agents, which are classified according to their antibacterial mechanisms.
细菌作为数量最多的生物,一直威胁着人类的生命,直到抗生素的出现。然而,随着抗生素的长期广泛使用,细菌逐渐对其产生了耐药性,这进一步严重威胁了人类和环境安全。近几十年来,基于金属离子、高热、自由基、物理穿刺以及多种机制协同作用的新型杀菌方法引起了越来越多的关注。因此,多种新型抗菌剂得到了发展。其中,金属有机框架(MOFs)似乎发挥着越来越重要的作用。MOFs 的独特特性使其成为多功能平台的理想选择。通过选择适当的亚稳配位键,MOFs 可以充当储库并释放抗菌金属离子或有机配体;通过构建多孔结构,MOFs 可以充当多种类型药物的载体,实现缓慢和持续的释放;通过精确设计其组成和孔结构,MOFs 可以在刺激下产生热和自由基。重要的是,通过与其他材料结合,MOFs 可以作为一个平台,通过多种机制的协同作用有效地杀死细菌。在本文中,我们主要关注基于 MOF 的抗菌剂的最新发展,根据其抗菌机制对其进行分类。
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