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Syntheses and medicinal chemistry of azepinoindolones: a look back to leap forward

机译:亚己芬太酒的合成和药用化学:回头向前跳跃

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摘要

Nitrogen-containing heterocyclic scaffolds constitute nearly 75% of small molecules which favorably act as drug candidates. For the past few decades, numerous natural and synthetic indole-based scaffolds have been reported for their diverse pharmacological profiles. In particular, indole-fused azepines, termed azepinoindolones, have come under the radar of medicinal chemists owing to their synthetic and pharmacological importance. A plethora of literature reports has been generated thereof, which calls for the need for the compilation of information to understand their current status in drug discovery. Accumulating reports of evidence suggest that compounds containing this privileged scaffold display their cytotoxic effects via inhibition of kinase, topoisomerase I, mitochondrial malate dehydrogenase (mMDH), and tubulin polymerization and as DNA minor groove binding agents. Herein, we endeavor to present a closer look at the advancements of various synthetic and derivatization methods of azepinoin-dolone-based compounds. We have further extended our efforts to discuss the pharmacological effects of azepinoindolones in the whole range of medicinal chemistry as anti-Alzheimer, anticancer, anti-inflammatory, antidiabetic, antileishmanial, and antipyranosomal agents and as drug delivery vectors. Our analysis of recent advances reveals that azepinoindolones will continue to serve as potential pharmaceutical modalities in the years to come and their substantial pool of synthetic methods will be ever expanding.
机译:含氮杂环支架构成近75%的小分子,有利地充当毒品候选物。在过去的几十年里,已经报道了许多基于天然的基于吲哚的支架,用于其不同的药理学谱。特别是,由于其合成和药理学的重要性,吲哚融合的偶氮病如紫红素吲哚甲酮所致的药物化学家的雷达。已经生成了一种夸张的文学报告,该报告要求汇编信息来了解其目前的药物发现状态。累积证据报告表明,含有这种特权支架的化合物通过激酶,拓扑异构酶I,线粒体苹果酸脱氢酶(MMDH)和管蛋白聚合和DNA较小槽粘合剂显示它们的细胞毒性作用。在此,我们努力仔细看看各种合成和衍生化方法的基于亚己戊酮类化合物的进步。我们进一步扩展了我们努力,讨论亚己民族诺酮在抗阿尔茨海默,抗癌,抗炎,抗糖尿病,抗腹癌和防吡喃糖剂和防吡喃糖体和药物递送载体中的全系列药物化学的药理作用。我们对最近进展的分析表明,紫杉草管子将继续作为潜在的药物方式作为未来几年,其大量的合成方法将永远扩大。

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  • 来源
    《Organic & biomolecular chemistry》 |2021年第4期|738-764|共27页
  • 作者单位

    Department of Medicinal Chemistry National Institute of Pharmaceutical Education and Research (NIPER) Hyderabad-500037 India;

    Department of Medicinal Chemistry National Institute of Pharmaceutical Education and Research (NIPER) Hyderabad-500037 India;

    Department of Medicinal Chemistry National Institute of Pharmaceutical Education and Research (NIPER) Hyderabad-500037 India;

    Department of Medicinal Chemistry National Institute of Pharmaceutical Education and Research (NIPER) Hyderabad-500037 India;

    Department of Medicinal Chemistry National Institute of Pharmaceutical Education and Research (NIPER) Hyderabad-500037 India;

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