Molecular Docking, Pharmacokinetics and Molecular Dynamics Simulation Studies of Some Bioactive Compounds Isolated from Entandrophragma congoënse for Antiplasmodial Activity

S. Ahmed, G. Happi, Désiré Soh, S. Salau
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引用次数: 1

Abstract

As a follow-up to earlier reported works on the phytochemical study of some isolated bioactive compounds from the root and bark of Entandrophragma congoënse as potent anti-plasmodium drugs (Happi et. al.2005), some of the isolated compounds were tested in vitro for antiplasmodial and cytotoxicity but no insight was given into the binding affinities of these compounds, the ADMET (Absorption, Distribution, Metabolism, Excretion and Toxicity), drug-likeness studies as well as molecular dynamics simulation of some of the isolates. Hence, a total of 21 compounds including 19 isolates and 2 standard drugs were computationally studied for antimalarial activity against the target receptor with Protein Data Bank code (PDB code: 5TBO), but only 4 of the isolated compounds (L1, L2, L4 and L15) showed promise potent hits against Plasmodium. The results of molecular docking, ADMET studies and molecular dynamics simulations reveal that compound L15, when isolated, can alone, or together with other qualified compounds such as L1, L2 and L4 provide a better inhibition rating compared to Chloroquine® (L21) the FDA-approved drug for the treatment of malaria.
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内参草congoënse抗疟原虫活性化合物的分子对接、药代动力学及分子动力学模拟研究
作为早期报道的植物化学研究的后续工作,从Entandrophragma congoënse的根和树皮中分离出一些生物活性化合物作为有效的抗疟原虫药物(Happi et. al.2005),一些分离的化合物在体外进行了抗疟原虫和细胞毒性测试,但没有深入了解这些化合物的结合亲和力,ADMET(吸收,分布,代谢,排泄和毒性),部分分离株的药物相似性研究及分子动力学模拟。因此,共有21个化合物,包括19个分离物和2个标准药物,通过蛋白质数据库代码(PDB代码:5TBO)对目标受体的抗疟活性进行了计算研究,但只有4个分离化合物(L1, L2, L4和L15)显示出对疟原虫的有效打击。分子对接、ADMET研究和分子动力学模拟的结果表明,与fda批准的治疗疟疾的药物氯喹®(L21)相比,化合物L15在分离时可以单独或与其他合格的化合物(如L1、L2和L4)一起提供更好的抑制等级。
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