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碳纳米材料对抗病原体;碳纳米管、石墨烯/氧化石墨烯、富勒烯及其纳米复合材料的抗菌活性。

Carbon nanomaterials against pathogens; the antimicrobial activity of carbon nanotubes, graphene/graphene oxide, fullerenes, and their nanocomposites.

机构信息

Research Center for Environmental Determinants of Health (RCEDH), Kermanshah University of Medical Sciences, Kermanshah, Iran.

College of Horticulture and Plant Protection, Yangzhou University, Yangzhou 225009, China.

出版信息

Adv Colloid Interface Sci. 2020 Oct;284:102250. doi: 10.1016/j.cis.2020.102250. Epub 2020 Aug 28.

Abstract

Recently, antibiotic resistance of pathogens has grown given the excessive and inappropriate usage of common antimicrobial agents. Hence, producing novel antimicrobial compounds is a necessity. Carbon nanomaterials (CNMs) such as carbon nanotubes, graphene/graphene oxide, and fullerenes, as an emerging class of novel materials, can exhibit a considerable antimicrobial activity, especially in the nanocomposite forms suitable for different fields including biomedical and food applications. These nanomaterials have attracted a great deal of interest due to their broad efficiency and novel features. The most important factor affecting the antimicrobial activity of CNMs is their size. Smaller particles with a higher surface to volume ratio can easily attach onto the microbial cells and affect their cell membrane integrity, metabolic procedures, and structural components. As these unique characteristics are found in CNMs, a wide range of possibilities have raised in terms of antimicrobial applications. This study aims to cover the antimicrobial activities of CNMs (both as individual forms and in nanocomposites) and comprehensively explain their mechanisms of action. The results of this review will present a broad perspective, summarizes the most remarkable findings, and provides an outlook regarding the antimicrobial properties of CNMs and their potential applications.

摘要

最近,由于常见抗菌剂的过度和不当使用,病原体的抗生素耐药性有所增加。因此,生产新型抗菌化合物是必要的。碳纳米材料(CNMs),如碳纳米管、石墨烯/氧化石墨烯和富勒烯,作为一类新兴的新型材料,具有相当大的抗菌活性,特别是在适合包括生物医学和食品应用等不同领域的纳米复合材料形式中。这些纳米材料因其广泛的效率和新颖的特性而引起了极大的兴趣。影响 CNMs 抗菌活性的最重要因素是它们的尺寸。具有更高表面积与体积比的较小颗粒更容易附着在微生物细胞上,并影响其细胞膜完整性、代谢过程和结构成分。由于 CNMs 具有这些独特的特性,因此在抗菌应用方面有了广泛的可能性。本研究旨在涵盖 CNMs(单独形式和纳米复合材料形式)的抗菌活性,并全面解释其作用机制。本综述的结果将提供广泛的视角,总结最显著的发现,并对 CNMs 的抗菌特性及其潜在应用提供展望。

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