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Nanoparticles and their antimicrobial properties against pathogens including bacteria, fungi, parasites and viruses

机译:纳米粒子及其对病原体的抗菌性质,包括细菌,真菌,寄生虫和病毒

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摘要

In recent year, propagation and resistance of pathogenic microorganisms (bacteria, fungi and virals) to common antimicrobial agents has led to serious health and food problems. Today, nanotechnology science and nanoparticles (NPs) have been identified as a new approach to deal with this problem because of their inherent antimicrobial activity. Several studies have reported that, NPs (metal and metal oxide) are considered as a group of materials that can be studied due to their antimicrobial properties. In this review, we investigated recent studies regarding the antimicrobial activity of NPs with their mechanism of action. Many research has proved that particle size is a significant factor which indicates the antimicrobial effectiveness of NPs. The use of NPs as antimicrobial component especially in the food additives and medical application can be one of the new and considerable strategies for overcoming pathogenic microorganisms. Nevertheless, more studies must be conducted to minimize the possible toxicity of NPs in order to use as suitable alternatives for disinfectants and antibacterial agents in food applications.
机译:近年来,致病微生物(细菌,真菌和病毒)对常见抗微生物剂的繁殖和抗性导致了严重的健康和食物问题。今天,由于其固有的抗微生物活动,纳米技术科学和纳米颗粒(NPS)被确定为处理这个问题的新方法。几次研究报道了,NPS(金属和金属氧化物)被认为是可以通过其抗微生物性质进行研究的一组材料。在本次综述中,我们研究了最近关于NPS的抗微生物活性与其行动机制的研究。许多研究证明,粒径是表明NPS的抗微生物效果的重要因素。使用NPS作为抗微生物组分,特别是在食品添加剂和医学应用中,可以是克服致病微生物的新策略之一。然而,必须进行更多的研究以最小化NPS的可能毒性,以便用作食品应用中的消毒剂和抗菌剂的合适替代品。

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