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纳米颗粒:对抗耐药性致病微生物的替代方案。

Nanoparticles: Alternatives Against Drug-Resistant Pathogenic Microbes.

作者信息

Rudramurthy Gudepalya Renukaiah, Swamy Mallappa Kumara, Sinniah Uma Rani, Ghasemzadeh Ali

机构信息

Department of Biotechnology, East-West College of Science, Bangalore-560091, Karnataka, India.

Department of Crop Science, Faculty of Agriculture, Universiti Putra Malaysia, Serdang, Selangor, Darul Ehsan 43400, Malaysia.

出版信息

Molecules. 2016 Jun 27;21(7):836. doi: 10.3390/molecules21070836.

Abstract

Antimicrobial substances may be synthetic, semisynthetic, or of natural origin (i.e., from plants and animals). Antimicrobials are considered "miracle drugs" and can determine if an infected patient/animal recovers or dies. However, the misuse of antimicrobials has led to the development of multi-drug-resistant bacteria, which is one of the greatest challenges for healthcare practitioners and is a significant global threat. The major concern with the development of antimicrobial resistance is the spread of resistant organisms. The replacement of conventional antimicrobials by new technology to counteract antimicrobial resistance is ongoing. Nanotechnology-driven innovations provide hope for patients and practitioners in overcoming the problem of drug resistance. Nanomaterials have tremendous potential in both the medical and veterinary fields. Several nanostructures comprising metallic particles have been developed to counteract microbial pathogens. The effectiveness of nanoparticles (NPs) depends on the interaction between the microorganism and the NPs. The development of effective nanomaterials requires in-depth knowledge of the physicochemical properties of NPs and the biological aspects of microorganisms. However, the risks associated with using NPs in healthcare need to be addressed. The present review highlights the antimicrobial effects of various nanomaterials and their potential advantages, drawbacks, or side effects. In addition, this comprehensive information may be useful in the discovery of broad-spectrum antimicrobial drugs for use against multi-drug-resistant microbial pathogens in the near future.

摘要

抗菌物质可以是合成的、半合成的或天然来源的(即来自动植物)。抗菌药物被视为“神奇药物”,能够决定感染的患者/动物是康复还是死亡。然而,抗菌药物的滥用已导致多重耐药菌的出现,这是医疗从业者面临的最大挑战之一,也是重大的全球威胁。对抗菌药物耐药性发展的主要担忧是耐药生物体的传播。正在用新技术取代传统抗菌药物以应对抗菌药物耐药性问题。纳米技术驱动的创新为患者和从业者克服耐药性问题带来了希望。纳米材料在医学和兽医学领域都具有巨大潜力。已经开发出几种包含金属颗粒的纳米结构来对抗微生物病原体。纳米颗粒(NPs)的有效性取决于微生物与NPs之间的相互作用。开发有效的纳米材料需要深入了解NPs的物理化学性质和微生物的生物学特性。然而,在医疗保健中使用NPs相关的风险需要加以解决。本综述强调了各种纳米材料的抗菌作用及其潜在的优点、缺点或副作用。此外,这些全面的信息可能有助于在不久的将来发现用于对抗多重耐药微生物病原体的广谱抗菌药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9137/6273897/a9df499520e9/molecules-21-00836-g001.jpg

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