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Linear and branched alkyl-esters and amides of gallic acid and other (mono-, di- and tri-) hydroxy benzoyl derivatives as promising anti-HCV inhibitors

机译:作为有前途的抗HCV抑制剂的直链和支链烷基酯和无碱酸的酰胺和其他(单 - ,二和三)羟基苯并衍生物

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摘要

Linear and branched compounds that contain two, three or five units of galloyl (3,4,5-trihydroxybenzoyl) or its isomer 2,3,4-trihydroxybenzoyl, as well as other mono- or dihydroxybenzoyl moieties have been synthesized. These molecules have been evaluated for their in vitro inhibitory effects against a wide panel of viruses showing preferential activity against HIV and HCV. Our structure-activity relationship studies demonstrated that the 2,3,4-trihydroxybenzoyl moiety provides better antiviral activities than the galloyl (3,4,5-trihydroxybenzoyl) moiety that is present in natural green tea catechins. This observation can be of interest for the further rational exploration of compounds with anti-HCV/HIV properties. The most notable finding with respect to HIV is that the tripodal compounds 43 and 45, with three 2,3,4-trihydroxybenzoyl moieties, showed higher activities than linear compounds with only one or two. With respect to HCV, the linear compounds, 52 and 41, containing a 12 polymethylene chain and two 2,3 di- or 2,3,4 tri-hydroxybenzoyl groups respectively at the ends of the molecule showed good antiviral efficiency. Furthermore, the anti-HCV activity of both compounds was observed at concentrations well below the cytotoxicity threshold. A representative member of these compounds, 41, showed that the anti-HCV activity was largely independent of the genetic make-up of the HCV subgenomic replicon and cell lines used.
机译:线性和包含没食子酰基(3,4,5- trihydroxybenzoyl)或其异构体2,3,4- trihydroxybenzoyl,以及其它单糖或二羟基部分的两个,三个或五个单位支链化合物已经被合成。这些分子已经评估了它们的体外抗病毒显示了针对HIV和HCV优先活性的宽面板抑制作用。我们的构效关系研究表明,2,3,4- trihydroxybenzoyl部分提供了比存在于天然绿茶中的儿茶素没食子酰基的(3,4,5- trihydroxybenzoyl)部分更好的抗病毒活性。该观察可以用于与抗HCV / HIV性质的化合物的进一步理性探索的兴趣。相对于HIV的最显着的发现是,三足化合物43和45,用三2,3,4- trihydroxybenzoyl部分,显示出比直链化合物更高的活性与只有一个或两个。对于HCV,线性化合物,52和41,分别包含在分子的端部12聚亚甲基链和两个2,3-二 - 或三2,3,4-羟基苯甲酰基显示出良好的抗病毒效率。此外,在浓度远低于细胞毒性阈值,观察到两种化合物的抗HCV活性。这些化合物的代表性成员,41,结果表明,抗HCV活性很大程度上独立于基因组成中使用的HCV亚基因组复制和细胞系的。

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