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Antiviral Activity of Graphene Oxide: How Sharp Edged Structure and Charge Matter

机译:氧化石墨烯的抗病毒活性:锋利的边缘结构和电荷物质如何

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Graphene oxide and its derivatives have been widely explored for their antimicrobial properties due to their high surface-to-volume ratios and unique chemical and physical properties. However, little information is available on their effects on viruses. In this study, we report the broad-spectrum antiviral activity of GO against pseudorabies virus (PRV, a DNA virus) and porcine epidemic diarrhea virus (PEDV, an RNA virus). Our results showed that GO significantly suppressed the infection of PRV and PEDV for a 2 log reduction in virus titers at noncytotoxic concentrations. The potent antiviral activity of both GO and rGO can be attributed to the unique single-layer structure and negative charge. First, GO exhibited potent antiviral activity when conjugated with PVP, a nonionic polymer, but not when conjugated with PDDA, a cationic polymer. Additionally, the precursors Gt and GtO showed much weaker antiviral activity than monolayer GO and rGO, suggesting that the nanosheet structure is important for antiviral properties. Furthermore, GO inactivated both viruses by structural destruction prior to viral entry. The overall results suggest the potential of graphene oxide as a novel promising antiviral agent with a broad and potent antiviral activity.
机译:氧化石墨烯及其衍生物由于其高的表面体积比和独特的化学和物理特性而被广泛地研究了其抗菌性能。但是,关于它们对病毒的影响的信息很少。在这项研究中,我们报告了GO对伪狂犬病病毒(PRV,一种DNA病毒)和猪流行性腹泻病毒(PEDV,一种RNA病毒)的广谱抗病毒活性。我们的结果表明,GO可以显着抑制PRV和PEDV的感染,使非细胞毒性浓度的病毒滴度降低2 log。 GO和rGO的有效抗病毒活性可以归因于独特的单层结构和负电荷。首先,GO与非离子聚合物PVP结合时表现出有效的抗病毒活性,而与阳离子聚合物PDDA结合时则没有。此外,前体Gt和GtO的抗病毒活性比单层GO和rGO弱得多,这表明纳米片结构对于抗病毒性能很重要。此外,GO在进入病毒之前通过结构破坏使两种病毒失活。总体结果表明氧化石墨烯作为具有广泛而有效的抗病毒活性的新型有希望的抗病毒剂的潜力。

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