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Synthesis and biological screening of some pyridine derivatives as anti-malarial agents

机译:某些吡啶衍生物作为抗疟剂的合成与生物学筛选

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Two series of pyridine derivatives were synthesised and evaluated for their in vivo anti-malarial activity against Plasmodium berghei. The anti-malarial activity was determined in vivo by applying 4-day standard suppressive test using chloroquine (CQ)-sensitive P. berghei ANKA strain–infected mice. Compounds 2a, 2g and 2h showed inhibition of the parasite multiplication by 90, 91 and 80%, respectively, at a dose level of 50 μmol/kg. Moreover, The most active compounds (2a, 2g and 2h) were tested in vitro against CQ-resistant Plasmodium falciparum RKL9 strains where compound 2g showed promising activity with IC50?=?0.0402 μM. The compounds were non-toxic at 300 and 100?mg/kg through the oral and parenteral routes, respectively. The docking pose of the most active compounds (2a, 2g and 2h) in the active site of dihydrofolate reductase enzyme revealed several hydrogen and hydrophobic interactions that contribute to the observed anti-malarial activities.
机译:合成了两个系列的吡啶衍生物,并评估了它们对伯氏疟原虫的体内抗疟疾活性。通过使用对氯喹(CQ)敏感的伯氏疟原虫ANKA株感染的小鼠进行4天标准抑制试验,在体内确定了抗疟疾活性。化合物2a,2g和2h在50μmol/ kg的剂量水平下分别显示出90%,91%和80%的寄生虫繁殖抑制作用。此外,在体外测试了最具活性的化合物(2a,2g和2h)对抗耐CQ的恶性疟原虫RKL9菌株,其中化合物2g在IC 50 == 0.0402μM时显示出有希望的活性。通过口服和肠胃外途径,该化合物分别以300和100?mg / kg的剂量无毒。活性最高的化合物(2a,2g和2h)在二氢叶酸还原酶的活性位点上的对接姿势显示出一些氢和疏水相互作用,有助于观察到的抗疟疾活性。

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