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首页> 外文期刊>Journal of Colloid and Interface Science >Filamentous anti-influenza agents wrapping around viruses
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Filamentous anti-influenza agents wrapping around viruses

机译:丝状抗流感剂包裹在病毒周围

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Owing to the emerging resistance to current anti-influenza therapies, strategies for blocking virus-cell interaction with agents that mimic interactions with host cell receptors are garnering interest. In this context, a multivalent presentation of sialyl groups on various types of scaffold materials such as dendrimers, liposomes, nanoparticles, and natural/synthetic polymers has been investigated for the inhibition of influenza A virus infection. However, the development of versatile antiviral agents based on monodisperse scaffolds capable of precise molecular design remains challenging. Whether an anisotropically extended filamentous nanostructure can serve as an effective scaffold for maximum inhibition of viral cell attachment has not been investigated. In this study, the preparation of a series of sialyllactose-conjugated filamentous bacteriophages (SLPhages), with controlled loading levels, ligand valencies, and two types of sialyllactose (alpha 2,3' and alpha 2,6'), is demonstrated. With optimal ligand loading and valency, SLPhages showed inhibitory activity (in vitro) against influenza A viruses at concentrations of tens of picomolar. This remarkable inhibition is due to the strong interaction between the SLPhage and the virus; this interaction is adequately potent to compensate for the cost of the bending and wrapping of the SLPhage around the influenza virus. Our study may open new avenues for the development of filamentous anti-viral agents, in which virus-wrapping or aggregation is the primary feature responsible for the blocking of cell entry. (C) 2020 Elsevier Inc. All rights reserved.
机译:由于对当前抗流感疗法的耐药性正在显现,因此,用模拟与宿主细胞受体相互作用的药物阻断病毒-细胞相互作用的策略正在引起人们的兴趣。在这种情况下,已经研究了在各种类型的支架材料(如树状大分子、脂质体、纳米颗粒和天然/合成聚合物)上唾液酸基团的多价呈现,以抑制甲型流感病毒感染。然而,基于能够精确分子设计的单分散支架的多功能抗病毒药物的开发仍然具有挑战性。各向异性延伸的丝状纳米结构是否可以作为最大限度抑制病毒细胞附着的有效支架尚未研究。在这项研究中,我们展示了一系列唾液酸乳糖结合的丝状噬菌体(SL噬菌体)的制备,这些噬菌体具有可控的负载水平、配体价和两种唾液酸乳糖(α2,3'和α2,6')。在最佳的配体负载量和价态下,SLV噬菌体在数十微微摩尔浓度下(体外)对甲型流感病毒表现出抑制活性。这种显著的抑制作用是由于噬菌体和病毒之间的强烈相互作用;这种相互作用足以补偿流感病毒周围的噬菌体弯曲和包裹的成本。我们的研究可能为丝状抗病毒药物的开发开辟新途径,其中病毒包裹或聚集是阻止细胞进入的主要特征。(C) 2020爱思唯尔公司版权所有。

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