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甘草次酸 1-硫代葡萄糖醛酸苷类似物的合成及抗病毒活性。

Synthesis and antiviral activities of spacer-linked 1-thioglucuronide analogues of glycyrrhizin.

机构信息

Department of Chemistry, University of Natural Resources and Life Sciences-Vienna, Muthgasse 18, A-1190 Vienna, Austria.

出版信息

Beilstein J Org Chem. 2012;8:705-11. doi: 10.3762/bjoc.8.79. Epub 2012 May 8.

Abstract

The influenza virus infection remains a significant threat to public health and the increase of antiviral resistance to available drugs generates an urgent need for new antiviral compounds. Starting from the natural, antivirally active compound glycyrrhizin, spacer-bridged derivatives were generated with improved antiviral activity against the influenza A virus infection. Simplified analogues of the triterpene saponin glycyrrhizin containing 1-thio-β-D-glucuronic acid residues have been prepared in good yields by alkylation of 3-amino and 3-thio derivatives of glycyrrhetinic acid with a 2-iodoethyl 1-thio-β-D-glucopyranosiduronate derivative. The spacer-connected 3-amino derivatives were further transformed into N-acetylated and N-succinylated derivatives. The deprotected compounds containing these carboxylic acid appendices mimic the glycon part of glycyrrhizin as well as the hemisuccinate derivative of glycyrrhetinic acid, carbenoxolone. Antiviral activities of the compounds were determined in a biological test based on influenza A virus-infected cells, wherein the 3-(2-thioethyl)-N-acetylamino- and 3-(2-thioethyl)-thio-linked glucuronide derivatives were effective inhibitors with IC(50) values as low as 54 µM.

摘要

流感病毒感染仍然是对公众健康的重大威胁,而现有抗病毒药物的抗药性增加则迫切需要新的抗病毒化合物。本研究以天然的、具有抗病毒活性的化合物甘草酸为起始原料,合成了具有更好的抗流感病毒感染活性的间隔基桥连衍生物。通过甘草次酸的 3-氨基和 3-巯基衍生物与 2-碘乙基 1-硫代-β-D-吡喃葡萄糖苷衍生物的烷基化反应,以较好的产率制备了含有 1-硫代-β-D-葡萄糖醛酸残基的三萜皂苷甘草酸的简化类似物。间隔连接的 3-氨基衍生物进一步转化为 N-乙酰化和 N-琥珀酰化衍生物。这些含有羧酸附属物的脱保护化合物模拟了甘草酸的糖部分以及甘草次酸的半琥珀酸衍生物,即 carbenoxolone。在基于感染流感 A 病毒的细胞的生物试验中测定了化合物的抗病毒活性,其中 3-(2-硫代乙基)-N-乙酰氨基-和 3-(2-硫代乙基)-硫代连接的葡萄糖醛酸衍生物是有效的抑制剂,其 IC(50)值低至 54 μM。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16b3/3388857/6c6e3f32e5a9/Beilstein_J_Org_Chem-08-705-g002.jpg

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