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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Synthesis, biological evaluation and chemometric analysis of indazole derivatives. 1,2-Disubstituted 5-nitroindazolinones, new prototypes of antichagasic drug
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Synthesis, biological evaluation and chemometric analysis of indazole derivatives. 1,2-Disubstituted 5-nitroindazolinones, new prototypes of antichagasic drug

机译:吲唑衍生物的合成,生物学评估和化学计量分析。 1,2-二取代的5-硝基吲哚啉酮,抗chachagasic药物的新原型

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Chagas disease chemotherapy, currently based on only two drugs, nifurtimox and benznidazole, is far from satisfactory and therefore the development of new antichagasic compounds remains an important goal. On the basis of antichagasic properties previously described for some 1,2-disubstituted 5-nitroindazolin-3- ones (21, 33) and in order to initiate the optimization of activity of this kind of compounds, we have prepared a series of related analogs (22-32, 34-38, 58 and 59) and tested in vitro these products against epimastigote forms of Trypanosoma cruzi. 2-Benzyl-1-propyl (22), 2-benzyl-1-isopropyl (23) and 2-benzyl-1-butyl (24) derivatives have shown high trypanocidal activity and low unspecific toxicity. Other indazole derivatives with different substitution patterns (1-substituted 3-alkoxy-1H-indazoles and 2-substituted 3-alkoxy-2H-indazoles), arising from the synthetic procedures used to prepare the mentioned indazolinones, have moderate to low effectiveness. The exploration of SAR information using the concept of an activity landscape has been carried out with SARANEA software. We have also searched for structural similarities between 225 known antiprotozoan drugs and compound 22. The results confirm that compounds 22-24 constitute promising leads and that 5-nitroindazolin-3-one system is a novel anti-T. cruzi scaffold which may represent an important therapeutic alternative for the treatment of Chagas disease.
机译:恰加斯病的化学疗法目前仅基于尼富替莫和苯尼达唑这两种药物,远未令人满意,因此开发新的抗chachagasic化合物仍然是一个重要目标。根据先前描述的一些1,2-二取代的5-硝基吲哚并-3-的抗甲壳类药物的性质(21、33),为了启动这类化合物的活性优化,我们制备了一系列相关的类似物(22-32、34-38、58和59),并在体外测试了这些产品对克氏锥虫的副鞭毛形式。 2-苄基-1-丙基(22),2-苄基-1-异丙基(23)和2-苄基-1-丁基(24)衍生物显示出较高的锥虫杀灭活性和较低的非特异性毒性。由用于制备所述吲唑啉酮的合成方法产生的其他具有不同取代方式的吲唑衍生物(1-取代的3-烷氧基-1H-吲唑和2-取代的3-烷氧基-2H-吲唑)具有中等至低的效力。使用SARANEA软件已经利用活动态势的概念探索了SAR信息。我们还搜索了225种已知的抗原生动物药物与化合物22之间的结构相似性。结果证实,化合物22-24构成了有前途的先导,并且5-nitroindazolin-3-one系统是一种新型的抗T药物。克鲁兹脚手架可能代表着南美锥虫病的重要治疗选择。

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