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Antiviral mechanism of polyanionic carbosilane dendrimers against HIV-1

机译:聚阴离子碳硅烷树状聚合物对HIV-1的抗病毒作用机理

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摘要

Nanotechnology-derived platforms, such as dendrimers, are very attractive in several biological applications. In the case of human immunodeficiency virus (HIV) infection, polyanionic carbosilane dendrimers have shown great potential as antiviral agents in the development of novel microbicides to prevent the sexual transmission of HIV-1. In this work, we studied the mechanism of two sulfated and naphthylsulfonated functionalized carbosilane dendrimers, G3-S16 and G2-NF16. They are able to inhibit viral infection at fusion and thus at the entry step. Both compounds impede the binding of viral particles to target cell surface and membrane fusion through the blockage of gp120–CD4 interaction. In addition, and for the first time, we demonstrate that dendrimers can inhibit cell-to-cell HIV transmission and difficult infectious synapse formation. Thus, carbosilane dendrimers’ mode of action is a multifactorial process targeting several proteins from viral envelope and from host cells that could block HIV infection at different stages during the first step of infection.
机译:纳米技术衍生的平台,例如树枝状大分子,在几种生物学应用中非常有吸引力。在人类免疫缺陷病毒(HIV)感染的情况下,聚阴离子碳硅烷树状大分子在开发新型杀菌剂以防止HIV-1的性传播方面显示出作为抗病毒剂的巨大潜力。在这项工作中,我们研究了两种硫酸化和萘磺化的官能化碳硅烷树枝状大分子G3-S16和G2-NF16的机理。它们能够在融合时并因此在进入步骤时抑制病毒感染。两种化合物均通过阻止gp120-CD4相互作用而阻止病毒颗粒与靶细胞表面和膜融合的结合。此外,我们首次证明了树状聚合物可以抑制细胞间HIV传播和难于感染的突触形成。因此,碳硅烷树状大分子的作用方式是一个多因素过程,以病毒外壳和宿主细胞中的几种蛋白质为目标,这些蛋白质可以在感染的第一步中的不同阶段阻断HIV感染。

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