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12-Substituted 4-(1H)-Quinolones: Synthesis Antimalarial and Antitrypanosomal Activities in Vitro

机译:12-取代的4-(1H)-喹诺酮类药物:合成抗疟和抗锥虫体外活性。

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摘要

A diverse array of 4-(1H)-quinolone derivatives bearing substituents at positions 1 and 2 were synthesized and evaluated for antiprotozoal activities against Plasmodium falciparum and Trypanosoma brucei rhodesiense, and cytotoxicity against L-6 cells in vitro. Furthermore, selectivity indices were also determined for both parasites. All compounds tested showed antimalarial activity at low micromolar concentrations, with varied degrees of selectivity against L-6 cells. Compound >5a was found to be the most active against P. falciparum, with an IC50 value of 90 nM and good selectivity for the malarial parasite compared to the L-6 cells. Compound >10a, on the other hand, showed a strong antitrypanosomal effect with an IC50 value of 1.25 µM. In this study side chain diversity was explored by varying the side chain length and substitution pattern on the aliphatic group at position-2 and a structure-antiprotozoal activity study revealed that the aromatic ring introduced at C-2 contributed significantly to the antiprotozoal activities.
机译:合成了在1和2位带有取代基的4-(1H)-喹诺酮衍生物,并评估了其对恶性疟原虫和布氏锥虫的原虫活性以及体外对L-6细胞的细胞毒性。此外,还确定了两种寄生虫的选择性指数。所有测试的化合物在低微摩尔浓度下均表现出抗疟疾活性,并且对L-6细胞具有不同程度的选择性。与L-6细胞相比,化合物> 5a 被发现对恶性疟原虫的活性最高,IC50值为90 nM,对疟原虫具有良好的选择性。另一方面,化合物> 10a 表现出很强的抗锥虫作用,IC50值为1.25 µM。在这项研究中,通过改变位置2上脂族基团的侧链长度和取代方式来探索侧链多样性,结构抗原生动物活性研究表明,在C-2处引入的芳环显着促进了抗原生动物活性。

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