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Structure-activity relationships of saponin derivatives: A series of entry inhibitors for highly pathogenic H5N1 influenza virus

机译:皂苷衍生物的构效关系:一系列高致病性H5N1流感病毒的进入抑制剂

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摘要

The occurrence of highly pathogenic avian influenza virus H5N1 highlights the urgent need for new classes of antiviral drugs. Theoretically, each of steps in influenza viral life cycle can be a target of antiviral therapeutics. However, up to date, no licenced entry inhibitor drug is available for H5N1 or any other influenza viruses. Our strategy for developing new anti-influenza therapeutics is to target the interaction between HA and sialic acid which is influenza viral receptor presented on host cell surface. Here, based on our previously discovered small molecule inhibitor saponin 1, intensive SAR studies around the sugar chain and aglycone were conducted. The results showed that both the chacotriosyl residue and the chlorogenin moiety of active compound 1 are important for the antiviral activity, although several subtle modifications can be made on particular positions.
机译:高致病性禽流感病毒H5N1的出现凸显了对新型抗病毒药物的迫切需求。从理论上讲,流感病毒生命周期中的每个步骤都可以成为抗病毒治疗的目标。但是,迄今为止,尚无针对H5N1或任何其他流感病毒的获得许可的进入抑制剂药物。我们开发新的抗流感疗法的策略是针对HA和唾液酸之间的相互作用,唾液酸是宿主细胞表面上呈现的流感病毒受体。在此,根据我们先前发现的小分子抑制剂皂苷1,对糖链和糖苷配基进行了深入的SAR研究。结果表明,尽管可以在特定位置进行一些微妙的修饰,但是活性化合物1的甲壳酰基残基和绿原苷部分对于抗病毒活性都很重要。

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