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首页> 外文期刊>Current Microbiology >Leishmania amazonensis Growth Inhibitors: Biological and Theoretical Features of Sulfonamide 4-Methoxychalcone Derivatives
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Leishmania amazonensis Growth Inhibitors: Biological and Theoretical Features of Sulfonamide 4-Methoxychalcone Derivatives

机译:亚马逊利什曼原虫(Leishmania amazonensis)生长抑制剂:磺酰胺4-甲氧基查耳酮衍生物的生物学和理论特征

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Current drugs for treating leishmaniasis are still associated with significant toxicity and failure rates. Thus, new effective and less toxic antileishmanial agents are still in need. Herein, we tested a series of sulfonamide 4-methoxychalcone derivatives against L. amazonensis promastigote and amastigote forms to identify its antileishmanial profile against this species compared to L. braziliensis. In addition, we used molecular modeling tools to determine stereoelectronic features that may lead to the antileishmanial profile. Interestingly, all tested compounds were able to affect L. amazonensis promastigote form in a concentration-dependent manner and with low cytotoxicity, except for derivative 3g. However, our results showed that compound 3f (para-Cl) presents the best profile against both L. amazonensis forms (promastigote and amastigote), differently from that observed for L. braziliensis, when compound 3i was the most active. Structure–activity relationship (SAR) analysis of these derivatives pointed molecular volume, HOMO density, and conformational aspects as important characteristics for parasitic profile. Overall, sulfonamide 4-methoxychalcone derivatives may be pointed out not only as lead compounds for treating leishmaniasis (i.e., 3f) but also as experimental tools presenting parasite-selectivity (i.e., 3i).
机译:当前用于治疗利什曼病的药物仍具有明显的毒性和失败率。因此,仍然需要新的有效且毒性较小的抗衰老剂。在这里,我们测试了一系列磺酰胺4-甲氧基查耳酮衍生物对亚马逊L. amazonensis的前鞭毛体和鞭毛体形式,以鉴定其抗巴西疟原虫的特性。另外,我们使用了分子建模工具来确定可能导致反手工轮廓的立体电子特征。有趣的是,除了衍生物3g,所有测试的化合物都能够以浓度依赖的方式并且低细胞毒性地影响亚马逊乳杆菌的前鞭毛体形式。然而,我们的结果表明,化合物3f(对-Cl)对亚马逊L. amazonensis的形态(前鞭毛体和amstigote)均表现出最佳的分布,这与化合物3i最活跃时对巴西乳杆菌观察到的不同。这些衍生物的结构-活性关系(SAR)分析指出,分子体积,HOMO密度和构象方面是寄生轮廓的重要特征。总体而言,磺酰胺4-甲氧基查耳酮衍生物不仅可以作为治疗利什曼病的先导化合物(即3f),而且可以作为表现出寄生虫选择性的实验工具(即3i)。

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