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Functionalized nanographene sheets with high antiviral activity through synergistic electrostatic and hydrophobic interactions

机译:功能化nanographene表高通过协同抗病毒活性静电和疏水相互作用

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As resistance to traditional drugs emerges for treatment of virus infections, the need for new methods for virus inhibition increases. Graphene derivatives with large surface areas have shown strong activity against different viruses. However, the inability of current synthetic protocols to accurately manipulate the structure of graphene sheets in order to control their antiviral activity remains a major challenge. In this work, a series of graphene derivatives with defined polyglycerol sulfate and fatty amine functionalities have been synthesized and their interactions with herpes simplex virus type 1 (HSV-1) are investigated. While electrostatic interactions between polyglycerol sulfate and virus particles trigger the binding of graphene to virus, alkyl chains induce a high antiviral activity by secondary hydrophobic interactions. Among graphene sheets with a broad range of alkyl chains, (C-3-C-18), the C-12-functionalized sheets showed the highest antiviral activity, indicating the optimum synergistic effect between electrostatic and hydrophobic interactions, but this derivative was toxic against the Vero cell line. In contrast, sheets functionalized with C-6- and C-9-alkyl chains showed low toxicity against Vero cells and a synergistic inhibition of HSV-1. This study shows that antiviral agents against HSV-1 can be obtained by controlled and stepwise functionalization of graphene sheets and may be developed into antiviral agents for future biomedical applications.
机译:作为传统药物出现耐药性治疗病毒感染,需要新的病毒的方法抑制增长。衍生品与大型表面区域显示强烈的活动对不同的病毒。然而,当前合成的能力协议来精确控制结构为了控制上的石墨烯薄片抗病毒活性仍然是一个重大的挑战。这项工作,一系列石墨烯衍生品定义硫酸聚甘油和脂肪胺功能及其合成与单纯疱疹病毒1型的互动(1型单纯疱疹病毒)调查。硫酸聚甘油和之间的相互作用病毒粒子引起石墨烯的绑定病毒,烷基链诱导高抗病毒活动二次疏水相互作用。石墨烯中广泛的烷基链,C-12-functionalized (C-3-C-18)表显示抗病毒活性最高,表明最优之间的协同效应静电和疏水相互作用,但是这个导数对维洛细胞毒性线。其他- - - C-9-alkyl链显示低毒性对维洛细胞和协同抑制作用1型单纯疱疹病毒。针对1型单纯疱疹病毒可以通过控制和获得床单和逐步功能化的石墨烯可能发展成为抗病毒药物的未来生物医学应用。

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