Senior Katharina, Müller Stefanie, Schacht Veronika J, Bunge Michael
Institute of Applied Microbiology, Justus Liebig University of Giessen, Germany.
Recent Pat Food Nutr Agric. 2012 Dec;4(3):200-9. doi: 10.2174/2212798411204030200.
Nanotechnology offers powerful new approaches to controlling unwanted microorganisms and other potential biohazards. Engineered nanoparticles with antifungal, antimicrobial, and antiviral properties are now being developed for a variety of applications, including manufacture and maintenance of sterile surfaces, prevention and control of biological contamination, food and water safety, and treatment of infectious diseases and cancer. The great potential of antimicrobial precious-metal nanoparticles is reflected by the high number of recent publications and patent applications, which is summarized, at least in part, in this paper. This review should provide an overview and offer guidance to the scientific community interested in nano(bio)technology, nanomedicine, and nanotoxicology, and may also be of interest to a broader scientific audience. Furthermore, this review covers specific topics in research and development addressing the effects of nanoparticles on microorganisms as well as novel nanotechnology-based approaches for controlling potentially pathogenic microorganisms.
纳米技术为控制有害微生物及其他潜在生物危害提供了强大的新方法。目前正在开发具有抗真菌、抗菌和抗病毒特性的工程纳米颗粒,用于多种应用,包括无菌表面的制造和维护、生物污染的预防和控制、食品和水安全以及传染病和癌症的治疗。抗菌贵金属纳米颗粒的巨大潜力体现在近期大量的出版物和专利申请中,本文至少部分地对此进行了总结。本综述应为对纳米(生物)技术、纳米医学和纳米毒理学感兴趣的科学界提供概述和指导,也可能引起更广泛科学受众的兴趣。此外,本综述涵盖了研发中的特定主题,涉及纳米颗粒对微生物的影响以及基于纳米技术的控制潜在致病微生物的新方法。