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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:没食子酸和其他(单,二和三)羟基苯甲酰基衍生物的线性和支链烷基酯和酰胺,有望成为抗HCV抑制剂

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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:已经合成了含有两个,三个或五个单元的没食子酰基(3,4,5-三羟基苯甲酰基)或其异构体2,3,4-三羟基苯甲酰基以及其他单或二羟基苯甲酰基部分的直链和支链化合物。已经评估了这些分子对多种病毒的体外抑制作用,这些病毒显示出对HIV和HCV的优先活性。我们的结构活性关系研究表明,与天然绿茶儿茶素中的没食子酰基(3,4,5-三羟基苯甲酰基)部分相比,2,3,4-三羟基苯甲酰基部分提供了更好的抗病毒活性。该观察对于进一步合理探索具有抗HCV / HIV特性的化合物可能是有意义的。关于HIV的最显着发现是具有三个3,2,3,4-三羟基苯甲酰基部分的三脚架化合物43和45比仅具有一个或两个的线性化合物显示出更高的活性。对于HCV,在分子末端分别含有12个多亚甲基链和两个2,3二或2,3,4三羟基苯甲酰基的线性化合物52和41显示出良好的抗病毒效率。此外,在远低于细胞毒性阈值的浓度下观察到两种化合物的抗HCV活性。这些化合物的代表成员41表明,抗HCV活性在很大程度上与HCV亚基因组复制子和所用细胞系的遗传组成无关。

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