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石墨烯纳米材料的抗病原体活性:综述。

Anti-pathogenic activity of graphene nanomaterials: A review.

机构信息

Energy and Environmental Materials Research Centre (E(2)MC), School of Metallurgy, Northeastern University, Shenyang, 110819, China.

Energy and Environmental Materials Research Centre (E(2)MC), School of Metallurgy, Northeastern University, Shenyang, 110819, China.

出版信息

Colloids Surf B Biointerfaces. 2021 Mar;199:111509. doi: 10.1016/j.colsurfb.2020.111509. Epub 2020 Dec 4.

Abstract

Graphene and its derivatives are promising candidates for a variety of biological applications, among which, their anti-pathogenic properties are highly attractive due to the outstanding physicochemical characteristics of these novel nanomaterials. The antibacterial, antiviral and antifungal performances of graphene are increasingly becoming more important due to the pathogen's resistance to existing drugs. Despite this, the factors influencing the antibacterial activity of graphene nanomaterials, and consequently, the mechanisms involved are still controversial. This review aims to systematically summarize the literature, discussing various factors that affect the antibacterial performance of graphene materials, including the shape, size, functional group and the electrical conductivity of graphene flakes, as well as the concentration, contact time and the pH value of the graphene suspensions used in related microbial tests. We discuss the possible surface and edge interactions between bacterial cells and graphene nanomaterials, which cause antibacterial effects such as membrane/oxidative/photothermal stresses, charge transfer, entrapment and self-killing phenomena. This article reviews the anti-pathogenic activity of graphene nanomaterials, comprising their antibacterial, antiviral, antifungal and biofilm-forming performance, with an emphasis on the antibacterial mechanisms involved.

摘要

石墨烯及其衍生物是各种生物应用的有前途的候选者,其中,由于这些新型纳米材料的出色物理化学特性,它们的抗病原体特性极具吸引力。由于病原体对现有药物的耐药性,石墨烯的抗菌、抗病毒和抗真菌性能变得越来越重要。尽管如此,影响石墨烯纳米材料抗菌活性的因素,以及因此涉及的机制仍然存在争议。本综述旨在系统地总结文献,讨论影响石墨烯材料抗菌性能的各种因素,包括石墨烯片的形状、大小、官能团和电导率,以及相关微生物测试中使用的石墨烯悬浮液的浓度、接触时间和 pH 值。我们讨论了细菌细胞与石墨烯纳米材料之间可能发生的表面和边缘相互作用,这些相互作用导致了抗菌作用,如膜/氧化/光热应激、电荷转移、捕获和自杀现象。本文综述了石墨烯纳米材料的抗病原体活性,包括其抗菌、抗病毒、抗真菌和生物膜形成性能,重点介绍了相关的抗菌机制。

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