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Design and synthesis of imidazolidinone derivatives as potent anti-leishmanial agents by bioisosterism

机译:咪唑烷酮衍生物的设计与合成Bioisosteriss的效力抗Leishmanial

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摘要

Bioisosterism is a useful strategy in rational drug design to improve pharmacodynamic and pharmacokinetic properties of lead compounds. Imidazolidinones have been reported as potent kinase inhibitors and antileishmanial agents. In this study, bioisosteres of imidazolidinones (compounds 1-3) were evaluated for their antileishmanial properties. The modified imidazolidinones exhibited potent antileishmanial activity against extracellular as well as intracellular Leishmania donovani parasites in nanomolar concentrations. The selectivity index of these compounds on host cells was found to be more than 1000, emphasizing their specificity toward the parasite. Using SwissTargetPrediction software, we assessed the potential targets of these compounds and found MAPK as the most probable target. To in vitro validate, we developed a novel in vitro kinase assay that mimics the in vivo nature of the functional kinome. Compounds 1-3 displayed specific inhibition of parasite kinase activity accompanied by an increase in intracellular sodium levels in the parasites. This might be the effect of kinase inhibition that regulates sodium homeostasis through Na-ATPases. Finally, the compound-treated parasites underwent apoptosis-like death. This study represents bioisoterism as a novel approach for drug design to establish the structure-activity relationship, which in turn helps to improve the therapeutic activity of lead compounds.
机译:生物脑睾丸主义是一种有理性药物设计的有用策略,以改善铅化合物的药效学和药代动力学性质。咪唑烷酮据报道称为有效的激酶抑制剂和抗碱酶促剂。在该研究中,评价咪唑烷酮的生物蛋白酶(化合物1-3)的抗碱基物质。修饰的咪唑烷酮在纳米摩尔浓度下表现出针对细胞外和细胞内Leishmania Donovani寄生虫的有效的抗碱性活动。发现这些化合物在宿主细胞上的选择性指数大于1000,强调其对寄生虫的特异性。使用SwisstargetPrediction软件,我们评估了这些化合物的潜在目标,并找到了MAPK作为最可能的目标。为了体外验证,我们开发了一种在体外激酶测定的新颖性,其模仿功能性Kinome的体内性质。化合物1-3显示寄生虫激酶活性的特异性抑制伴有寄生虫细胞内钠水平的增加。这可能是激酶抑制通过Na-ATP酶来调节稳态的激酶抑制的影响。最后,复合治疗的寄生虫接受了凋亡样死亡。本研究代表了生物自由主义作为制定结构 - 活性关系的新方法,这反过来有助于改善铅化合物的治疗活性。

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