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Antimicrobial nanomaterials against biofilms: an alternative strategy

机译:对生物膜的抗菌纳米材料:另一种策略

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摘要

Microbial adhesion to surfaces and the consequent biofilm formation under various environmental conditions is a common ecological phenomenon. Although biofilms play crucial beneficial roles in many processes, they can also cause serious problems for food, biomedical, environmental, and industrial sectors, leading to higher costs of production and equipment maintenance, and negative public health and environmental impacts. Biofilms are difficult to eradicate due to their resistance to conventional antimicrobial applications. Consequently, attention has been devoted to new emerging nanomaterials for their remarkable antimicrobial function. Understanding the inactivation mechanisms is the key to increase the efficiency of nano-particles (NPs) and enhance the feasibility of their application against various microorganisms under different environments. In this paper, we review the activities of NPs as antimicrobial agents. We also discuss the mechanisms and factors contributing to antimicrobial properties of NPs. In addition, we describe some of the approaches employing NPs as effective antimicrobial agent, and associated challenges and problems in developing NPs as effective antibiofilm agents.
机译:在各种环境条件下对表面的微生物粘附和随后的生物膜形成是一种常见的生态现象。虽然生物膜在许多过程中起重要的有益作用,但它们也可以对食品,生物医学,环境和工业部门造成严重问题,导致生产和设备维护的更高成本,以及负面的公共卫生和环境影响。由于它们对常规抗微生物应用的抵抗力,生物膜难以消除。因此,注意到新兴纳米材料的注意力为其显着的抗微生物功能。了解灭活机制是提高纳米粒子(NPS)效率的关键,并增强其应用于不同环境下的各种微生物的可行性。在本文中,我们审查了NPS作为抗微生物剂的活动。我们还讨论了有助于NPS抗微生物性质的机制和因素。此外,我们描述了使用NPS作为有效抗微生物剂的一些方法,以及如何将NPS作为有效抗抗抗体剂的相关挑战和问题。

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