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生物源纳米颗粒的抗菌作用

Antimicrobial Effects of Biogenic Nanoparticles.

作者信息

Singh Priyanka, Garg Abhroop, Pandit Santosh, Mokkapati V R S S, Mijakovic Ivan

机构信息

The Novo Nordisk Foundation Center for Biosustainability, Technical University of Denmark, 2800 Kgs. Lyngby, Denmark.

Systems and Synthetic Biology Division, Department of Biology and Biological Engineering, Chalmers University of Technology, 41296 Chalmers, Sweden.

出版信息

Nanomaterials (Basel). 2018 Dec 5;8(12):1009. doi: 10.3390/nano8121009.

Abstract

Infectious diseases pose one of the greatest health challenges in the medical world. Though numerous antimicrobial drugs are commercially available, they often lack effectiveness against recently developed multidrug resistant (MDR) microorganisms. This results in high antibiotic dose administration and a need to develop new antibiotics, which in turn requires time, money, and labor investments. Recently, biogenic metallic nanoparticles have proven their effectiveness against MDR microorganisms, individually and in synergy with the current/conventional antibiotics. Importantly, biogenic nanoparticles are easy to produce, facile, biocompatible, and environmentally friendly in nature. In addition, biogenic nanoparticles are surrounded by capping layers, which provide them with biocompatibility and long-term stability. Moreover, these capping layers provide an active surface for interaction with biological components, facilitated by free active surface functional groups. These groups are available for modification, such as conjugation with antimicrobial drugs, genes, and peptides, in order to enhance their efficacy and delivery. This review summarizes the conventional antibiotic treatments and highlights the benefits of using nanoparticles in combating infectious diseases.

摘要

传染病是医学界面临的最大健康挑战之一。尽管市面上有许多抗菌药物,但它们往往对最近出现的多重耐药(MDR)微生物缺乏有效性。这导致了高剂量抗生素的使用,并需要开发新的抗生素,而这反过来又需要时间、资金和劳动力投入。最近,生物源金属纳米颗粒已证明其对MDR微生物具有单独的有效性,以及与现有/传统抗生素协同的有效性。重要的是,生物源纳米颗粒易于生产、简便、具有生物相容性且本质上对环境友好。此外,生物源纳米颗粒被封端层包围,这赋予它们生物相容性和长期稳定性。而且,这些封端层提供了一个活性表面,便于与生物成分相互作用,这是由游离的活性表面官能团促成的。这些基团可用于修饰,例如与抗菌药物、基因和肽结合,以提高它们的功效和递送能力。本综述总结了传统的抗生素治疗方法,并强调了使用纳米颗粒对抗传染病的益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b443/6315689/fdb1eb0ce353/nanomaterials-08-01009-g001.jpg

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