首页> 外文期刊>Journal of combinatorial chemistry >2 beta-(N-Substituted piperazino)-5 alpha-androstane-3 alpha,17 beta-diols: Parallel solid-phase synthesis and antiproliferative activity on human leukemia HL-60 cells
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2 beta-(N-Substituted piperazino)-5 alpha-androstane-3 alpha,17 beta-diols: Parallel solid-phase synthesis and antiproliferative activity on human leukemia HL-60 cells

机译:2β-(N-取代的哌嗪子)-5α-雄烷-3α,17β-二醇:并行固相合成和对人白血病HL-60细胞的抗增殖活性

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Leukemia is the most common cancer affecting children. A steroid possessing a methylpiperazine nucleus was recently reported to inhibit the proliferation of HL-60 leukemia cells. To speed up the development of this promising potential new drug, we generated libraries of analogues using parallel solid-phase organic synthesis (SPOS). A 6-step sequence of reactions, starting from dihydrotestosterone, afforded a steroidal 2,3 alpha-epoxide, which was selectively opened to give, after N-Fmoc protection, a diol with suitable stereochemistry. The difference of reactivity between 3 alpha-OH and 17 beta-OH was then used to allow the regioselective coupling of 17 beta-OH to chloro-activated butyldiethylsilane polystyrene. We next generated three libraries of 2 beta-piperazinyl-5 alpha-androstane-3 alpha,17 beta-diol N-derivatives with 1, 2, or 3 levels of molecular diversity in acceptable yields and purities for our biological screening assay. Several members of these libraries were more potent than the lead compound, especially five members with a proline as the first level of diversity and a cyclohexylcarbonyl, methylbutyryl, cyclohexylacetyl, cyclopentylpropionyl, or hexanoyl as the second level of diversity. They efficiently inhibited HL-60 cell proliferation with IC50 values of 0.58, 0.66, 1.78, 1.98, and 2.57 mu M, respectively. The present work demonstrates the potential of our SPOS approach for the optimization of a new class of cytotoxic agents.
机译:白血病是影响儿童的最常见癌症。最近报道了具有甲基哌嗪核的类固醇抑制HL-60白血病细胞的增殖。为了加快这种有前途的潜在新药的开发,我们使用并行固相有机合成(SPOS)生成了类似物库。从二氢睾丸激素开始的六步反应序列提供了甾体2,3α-环氧化物,将其选择性打开,在N-Fmoc保护后,得到具有适当立体化学的二醇。然后使用3α-OH和17β-OH之间的反应性差异来实现17β-OH与氯活化的丁基二乙基硅烷聚苯乙烯的区域选择性偶联。接下来,我们为我们的生物学筛选分析生成了三个具有1、2、3个水平的分子多样性水平的2个β-哌嗪基-5α-雄甾烷3α,17β-二醇N衍生物文库。这些文库中的几个成员比先导化合物更有效,尤其是五个成员,脯氨酸为第一多样性水平,环己基羰基,甲基丁酰基,环己基乙酰基,环戊基丙酰基或己酰基为第二多样性水平。它们有效抑制HL-60细胞增殖,IC50值分别为0.58、0.66、1.78、1.98和2.57μM。目前的工作证明了我们的SPOS方法在优化新型细胞毒剂方面的潜力。

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