Cheeseman Samuel, Christofferson Andrew J, Kariuki Rashad, Cozzolino Daniel, Daeneke Torben, Crawford Russell J, Truong Vi Khanh, Chapman James, Elbourne Aaron
School of Science College of Science Engineering and Health RMIT University Melbourne VIC 3001 Australia.
Nanobiotechnology Laboratory School of Science College of Science Engineering and Health RMIT University Melbourne VIC 3001 Australia.
Adv Sci (Weinh). 2020 Apr 6;7(10):1902913. doi: 10.1002/advs.201902913. eCollection 2020 May.
The development of antimicrobial drug resistance among pathogenic bacteria and fungi is one of the most significant health issues of the 21st century. Recently, advances in nanotechnology have led to the development of nanomaterials, particularly metals that exhibit antimicrobial properties. These metal nanomaterials have emerged as promising alternatives to traditional antimicrobial therapies. In this review, a broad overview of metal nanomaterials, their synthesis, properties, and interactions with pathogenic micro-organisms is first provided. Secondly, the range of nanomaterials that demonstrate passive antimicrobial properties are outlined and in-depth analysis and comparison of stimuli-responsive antimicrobial nanomaterials are provided, which represent the next generation of microbiocidal nanomaterials. The stimulus applied to activate such nanomaterials includes light (including photocatalytic and photothermal) and magnetic fields, which can induce magnetic hyperthermia and kinetically driven magnetic activation. Broadly, this review aims to summarize the currently available research and provide future scope for the development of metal nanomaterial-based antimicrobial technologies, particularly those that can be activated through externally applied stimuli.
致病细菌和真菌中抗菌药物耐药性的发展是21世纪最重大的健康问题之一。近年来,纳米技术的进步推动了纳米材料的发展,特别是具有抗菌特性的金属。这些金属纳米材料已成为传统抗菌疗法的有前途的替代品。在本综述中,首先对金属纳米材料、其合成、性质以及与致病微生物的相互作用进行了广泛概述。其次,概述了具有被动抗菌特性的纳米材料范围,并对刺激响应性抗菌纳米材料进行了深入分析和比较,这些材料代表了下一代杀菌纳米材料。用于激活此类纳米材料的刺激包括光(包括光催化和光热)和磁场,它们可诱导磁热疗和动力学驱动的磁激活。总体而言,本综述旨在总结当前可用的研究,并为基于金属纳米材料的抗菌技术的未来发展提供方向,特别是那些可通过外部施加刺激激活的技术。