首页> 美国卫生研究院文献>Molecules >Multistep Synthesis and In Vitro Anticancer Evaluation of 2-Pyrazolyl-Estradiol Derivatives Pyrazolocoumarin-Estradiol Hybrids and Analogous Compounds
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Multistep Synthesis and In Vitro Anticancer Evaluation of 2-Pyrazolyl-Estradiol Derivatives Pyrazolocoumarin-Estradiol Hybrids and Analogous Compounds

机译:MultiSep合成和体外抗癌评价2-吡唑基 - 雌二醇衍生物Pyrozolocoumarin - 雌二醇杂种和类似化合物

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摘要

Although the hormone independent cytotoxic activity of several estradiol derivatives endowed with a simple substituent at C-2 has been reported so far, 2-heterocyclic and 2,3-condensed analogs are less investigated from both synthetic and pharmacological points of view. Therefore, novel A-ring-connected 2-pyrazoles of estradiol and, for comparison, their structurally simplified non-steroidal pairs were synthesized from estradiol 3-methyl ether and 6-methoxy-1,2,3,4-tetrahydronaphthalene. Friedel-Crafts acetylation of the protected phenolic compounds and subsequent O-demethylation led to ortho-substituted derivatives regioselectively, which were converted to arylhydrazones with phenylhydrazine, 4-tolylhydrazine and 4-chloro-phenylhydrazine, respectively, under microwave conditions. The hydrazones were subjected to cyclization with the Vilsmeier-Haack reagent immediately after preparation and the ring closure/formylation sequence resulted in steroidal and non-steroidal 4′-formylpyrazoles in moderate to good yields. During reductive transformations, 4-hydroxymethyl-pyrazoles were obtained, while oxidative lactonization of the 4-formylpyrazole moiety with the phenolic OH in the presence of the Jones reagent afforded A-ring-integrated pyrazolocoumarin hybrids and related analogs. Steroidal pyrazoles, which were produced as C-17 acetates due to acetylation of C-17 OH during the primary Friedel-Crafts reaction, underwent deacetylation in alkaline methanol to furnish 2-heterocyclic estradiol derivatives. Pharmacological studies revealed the overall and cancer cell-specific cytotoxicity of the derivatives and the half maximal inhibitory concentrations were obtained for the most promising compounds.
机译:虽然已经报道了赋予C-2在C-2的简单取代基的雌二醇衍生物的激素独立细胞毒性活性,但是从合成和药理学点较少研究2-杂环和2,3-缩合的类似物。因此,从雌二醇3-甲基醚和6-甲氧基-1,2,3,4-四氢萘合成了它们结构上简化的非甾体对的新型α-环连接的2-吡唑和它们的结构上简化的非甾体对。 Friedel-Crafts受保护的酚类化合物的乙酰化和随后的O-脱甲基化导致邻替代的衍生物,分别在微波条件下分别与苯肼,4-甲苯肼和4-氯 - 苯基肼转化为芳基腙。在制备后立即用Vilsmeier-Haack试剂对含有vilsmeier-haack试剂进行环化,导致甾醇和非甾体4'-甲酰吡唑中的甾体和非甾体4'-甲酰吡嗪以中等至良好的产率。在还原转化期间,获得了4-羟甲基 - 吡唑,而在JONES试剂存在下,在奈斯毒剂的存在下,4-甲酰基吡唑部分的氧化沉淀物与酚醛酸,得到了环 - 整合的吡唑洛替洛林杂交物和相关类似物。甾体吡唑,其作为C-17乙酸盐产生的,由于C-17 oh期间的乙酰化,在初级Friedel-Crafts反应期间,在碱性甲醇中进行脱乙酰化以提供2-杂环雌二醇衍生物。药理学研究揭示了衍生物的总体和癌细胞特异性细胞毒性,并且获得了最有前景化合物的半最大抑制浓度。

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