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Synthesis and cytotoxic evaluation of uracil C-Mannich bases

机译:尿嘧啶C-曼尼希碱的合成及细胞毒性评估

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This study covers the design, synthesis, characterization, and cytotoxic activity of a series of uracil C-Mannich bases. Among them, one hybrid compound (1), a molecular combination of the potential antimetabolite substituted uracil and nitrogen mustard, having potential alkylating capability, was prepared as a Mannich base. The other compound was synthesized with the replacement of chlorines in the ethyl chains with hydroxyl groups for testing for anticancer activity. Some of Mannich bases having several amino groups with different pKa values were also synthesized and investigated in terms of cytotoxic activity. Their chemical structures were confirmed by means of their UV, IR, ~(13)H-NMR, ~(13)C-NMR, and MS data. Compounds 6 with diethylamine and 8 with piperazine are reported for the first time in the literature and compounds 1, 4, and 5 containing nitrogen mustard, pyrolidine, and diethanolamine, respectively, as amine function are reported for first time with detailed spectral data herein. Morpholine, piperidine, and dimethylamine were used in Mannich reactions for the synthesis of compounds 2, 3 and 7. We assessed their biological activities using MTT assays on 3 human cell lines: HeLa (cervix adenocarcinoma), MCF7 (breast adenocarcinoma), and A431 (skin epidermoid carcinoma). While compounds 2-8 have the potential to deaminate, forming ortho-quinone methides, which would be capable of alkylating cellular thiols, compound 1 has the potential to give aziridinium ion for nucleophilic alkylation. Our results are discussed in terms of the significance of these compounds in pharmaceutical use.
机译:这项研究涵盖了一系列尿嘧啶C-曼尼希碱基的设计,合成,表征和细胞毒性活性。其中,制备了一种杂化化合物(1),其为具有潜在烷基化能力的潜在的抗代谢物取代的尿嘧啶和氮芥的分子组合,作为曼尼希碱。合成了另一种化合物,其中乙基链中的氯被羟基取代,用于测试抗癌活性。还合成了一些具有几个具有不同pKa值的氨基的曼尼希碱,并就其细胞毒性进行了研究。通过其UV,IR,〜(13)H-NMR,〜(13)C-NMR和MS数据确认了它们的化学结构。在文献中首次报道了具有二乙胺的化合物6和具有哌嗪的8化合物,并首次报道了分别具有氮芥子碱,吡咯烷和二乙醇胺作为胺官能团的化合物1、4和5,并在此有详细的光谱数据。吗啉,哌啶和二甲胺用于曼尼希反应中,用于化合物2、3和7的合成。我们使用MTT分析在3种人类细胞系中评估了它们的生物学活性:HeLa(宫颈腺癌),MCF7(乳腺癌)和A431 (皮肤表皮样癌)。尽管化合物2-8具有脱氨基的潜力,形成了能够将细胞硫醇烷基化的邻醌甲基化物,但化合物1具有产生用于亲核烷基化的叠氮鎓离子的潜力。我们就这些化合物在药物使用中的重要性进行了讨论。

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