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纳米技术在抗菌方面的应用:方法与文献。

Antimicrobial applications of nanotechnology: methods and literature.

机构信息

Laboratory for Nanomedicine Research, School of Engineering, Brown University, Providence, RI 02917 , USA.

出版信息

Int J Nanomedicine. 2012;7:2767-81. doi: 10.2147/IJN.S24805. Epub 2012 Jun 6.

Abstract

The need for novel antibiotics comes from the relatively high incidence of bacterial infection and the growing resistance of bacteria to conventional antibiotics. Consequently, new methods for reducing bacteria activity (and associated infections) are badly needed. Nanotechnology, the use of materials with dimensions on the atomic or molecular scale, has become increasingly utilized for medical applications and is of great interest as an approach to killing or reducing the activity of numerous microorganisms. While some natural antibacterial materials, such as zinc and silver, possess greater antibacterial properties as particle size is reduced into the nanometer regime (due to the increased surface to volume ratio of a given mass of particles), the physical structure of a nanoparticle itself and the way in which it interacts with and penetrates into bacteria appears to also provide unique bactericidal mechanisms. A variety of techniques to evaluate bacteria viability, each with unique advantages and disadvantages, has been established and must be understood in order to determine the effectiveness of nanoparticles (diameter ≤ 100 nm) as antimicrobial agents. In addition to addressing those techniques, a review of select literature and a summary of bacteriostatic and bactericidal mechanisms are covered in this manuscript.

摘要

新型抗生素的需求源于细菌感染的相对高发率和细菌对传统抗生素的耐药性不断增加。因此,急需寻找新的方法来降低细菌的活性(和相关感染)。纳米技术是指利用原子或分子尺度的材料,已经越来越多地应用于医疗领域,并作为一种杀死或降低多种微生物活性的方法受到极大关注。虽然一些天然抗菌材料,如锌和银,在粒径减小到纳米级时具有更强的抗菌性能(由于给定质量的颗粒的表面积与体积比增加),但纳米颗粒本身的物理结构及其与细菌相互作用和穿透细菌的方式似乎也提供了独特的杀菌机制。已经建立了各种评估细菌活力的技术,每种技术都有其独特的优点和缺点,必须加以理解,才能确定纳米颗粒(直径≤100nm)作为抗菌剂的有效性。除了介绍这些技术外,本文还综述了一些文献,并总结了抑菌和杀菌机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07cc/3383293/b328c011e6a1/ijn-7-2767f1.jpg

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