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Synthesis of 4-Aminophenyl Substituted Indole Derivatives for the Instrumental Analysis and Molecular Docking Evaluation Studies

机译:4-氨基苯基取代吲哚衍生物的合成仪器分析及分子对接评价研究

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The Indole has been known to maintain celebrity status since so many decades and has been a centre point at the spectrum of pharmacological research. The present work stimulates an idea of generating a pool of library of lead compounds. The data collected can be used for the mapping of biologically active compounds. The reported derivatives of 4- aminophenyl substituted Indole were prepared by the methods of Fischer Indole synthesis and Vilsemeier reaction followed by screening for instrumental analysis and molecular docking studies. The synthesized compounds 4-(1-(2-phenylhydrazono)ethyl)aniline, 1, 4-(1H-indol-2-yl)aniline, 2 and 2-(4-aminophenyl)-lH-indole-3-carbaldehyde, 3 were found to have remarkable yield and instrumental data analysis and also showed remarkable docked characteristic. The molecular docking studies revealed that ligand (amino acids) of comp. 1, 2 and 3 had been docked successfully on the binding site of the 3JUS protein selected from PDB with H bonding. The molecular docking data showed that compound 1, would possess remarkable biological activity and compd. 2 and 3 would possess mild to moderate biological activity. Thus this research work paves the way to synthesize new derivatives and thus to develop new compounds in future with accurate prediction.
机译:已知吲哚由于多十年来维持名人状态,并且是药理研究谱的中心点。目前的作品刺激了产生铅化合物库池的想法。收集的数据可用于制定生物活性化合物的映射。通过Fischer Indole合成和Vilsemeier反应的方法制备了4-氨基苯基取代吲哚的报告的衍生物,然后通过筛选仪器分析和分子对接研究。合成的化合物4-(1-(2-苯基酰肼)乙基)苯胺,1,4-(1H-吲哚-2-基)苯胺,2和2-(4-氨基苯基)-LH-吲哚-3-碳醛,发现3个具有显着的产量和仪器数据分析,并且还显示出显着的对接特性。分子对接研究表明Comp的配体(氨基酸)。 1,2和3已成功停靠在从PDB中选择的3JUS蛋白的结合位点与H键合。分子对接数据显示化合物1将具有显着的生物活性和CPOCD。 2和3将具有轻度至中度生物活性。因此,这项研究工作铺平了合成新衍生物的方法,从而通过准确的预测来开发新化合物。

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