Synthesis, Cytotoxic Activity Evaluation and Quantitative Structure-ActivityAnalysis of Substituted 5,8-Dihydroxy-1,4-naphthoquinones and Their O- and S-Glycoside Derivatives Tested against Neuro-2a Cancer Cells
作者:Sergey Polonik、Galina Likhatskaya、Yuri Sabutski、Dmitry Pelageev、Vladimir Denisenko、Evgeny Pislyagin、Ekaterina Chingizova、Ekaterina Menchinskaya、Dmitry Aminin
DOI:10.3390/md18120602
日期:——
increase in the cytotoxic activity of acetylated thioglycosidesof NQs, which was partially retained for their deacetylated derivatives. Thiomethylglycosides of 2-hydroxy-1,4-NQs with OH and MeO groups in quinone core at positions 6 and 7, resprectively formed a nontoxic set of compounds with EC50 > 100 μM. A quantitative structure-activity relationship (QSAR) model of cytotoxic activity of 22 1,4-NQ derivatives
基于源自海胆的6,7-取代的2,5,8-三羟基-1,4-萘醌(1,4-NQs),制备了五种新的NQs乙酰-O-葡萄糖苷。开发了一种通过亚甲基间隔基将过O-乙酰化的1-巯基糖与2-羟基-1,4-NQ偶联的新方法。重氮甲烷使乙酰硫基甲基糖苷的醌核心的2-羟基甲基化和糖部分的脱乙酰基导致28个新的2-羟基-和2-甲氧基-1,4-NQs的硫代甲基糖苷。通过MTT方法测定了起始的1,4-NQs(13种化合物)及其O-和S-糖苷衍生物(37种化合物)对Neuro-2a小鼠神经母细胞瘤细胞的细胞毒活性。具有EC 50的细胞毒性化合物= 2.7–87.0μM ,发现EC 50 > 100μM的无毒化合物。乙酰化的O-和S-糖苷1,4-NQ最有效,EC 50 = 2.7-16.4μM。2-OH基萘醌核心的甲基化导致NQs的乙酰化硫糖苷的细胞毒活性急剧增加,而NQs的乙酰化硫糖苷部分保留了它们的脱乙酰基衍生物。2-羟基-1