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首页> 外文期刊>Bioorganic and medicinal chemistry >Green synthesis, biological evaluation, molecular docking studies and 3D-QSAR analysis of novel phenylalanine linked quinazoline-4(3H)-one-sulphonamide hybrid entities distorting the malarial reductase activity in folate pathway
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Green synthesis, biological evaluation, molecular docking studies and 3D-QSAR analysis of novel phenylalanine linked quinazoline-4(3H)-one-sulphonamide hybrid entities distorting the malarial reductase activity in folate pathway

机译:新的合成,生物学评价,分子对接研究和新型苯丙氨酸连接喹唑啉-4(3H) - 磺酰胺杂交实体扭曲叶酸途径疟疾还原酶活性

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摘要

A modified Grimmel's method for N-heterocyclization of phenylalanine linked sulphonamide side arm at position-2 was optimized leading to 2,3-disustituted-4-quinazolin-(3H)-ones. Further, [Bmim][BF4]-H2O (IL) was used as green solvent as well as catalyst for the synthesis of twenty two hybrid quinazolinone motifs (4a-4v) by N-heterocyclization reaction using microwave irradiation technique. The in vitro screening of the hybrid entities against the malarial species Plasmodium falciparum yielded five potent molecules 4l, 4n, 4r, 4t & 4u owing comparable antimalarial activity to the reference drugs. In continuation, an in silico study was carried out to obtain a pharmacophoric model and quantitative structure activity relationship. We also built a 3D-QSAR model to procure more information that could be applied to design new molecules with more potent Pf-DHFR inhibitory activity. The designed pharmacophore was recognized to be more potent for the selected molecules, exhibiting five pharmacophoric features. The active scaffolds were further evaluated for enzyme inhibition efficacy against alleged receptor Pf-DHFR computationally and in vitro, proving their candidature as lead dihydrofolate reductase inhibitors as well as the selectivity of the test candidates was ascertained by toxicity study against vero cells. The perception of good oral bioavailability was also proved by study of pharmacokinetic properties.
机译:优化了在位置-2处的苯丙氨酸连接磺酰胺侧臂的N-杂核侧臂的改性Grimmel的方法,导致2,3-脱落-4-喹唑啉 - (3H)。此外,通过使用微波辐射技术通过N-杂核反应用作绿色溶剂以及用于合成二十二杂交喹唑啉酮基序(4A-4V)的催化剂。杂交实体对疟疾物种疟原虫的体外筛选疟原虫的5个有效分子4L,4N,4R,4T&4U,对参考药物相当的抗疟活性。在延续中,进行了在基石研究中,以获得药物模型和定量结构活性关系。我们还建立了一个3D-QSAR模型,可以采购更多信息,可以应用于设计具有更多有效的PF-DHFR抑制活动的新分子。所设计的药镜被认识到所选分子更有效,表现出五种药物特征。进一步评估活性支架,用于计算上和体外对涉嫌受体PF-DHFR的酶抑制功效,证明其作为铅二氢醇还原酶抑制剂以及通过针对VERO细胞的毒性研究确定测试候选者的选择性。通过研究药代动力学性质,还证明了对良好口腔生物利用度的感知。

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