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Antiplasmodial activity of hydroxyethylamine analogs: Synthesis, biological activity and structure activity relationship of plasmepsin inhibitors

机译:羟乙基胺类似物的抗溶剂活性:Plasmepsin抑制剂的合成,生物活性和结构活性关系

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Malaria, particularly in endemic countries remains a threat to the human health and is the leading the cause of mortality in the tropical and sub-tropical areas. Herein, we explored new C-2 symmetric hydroxyethylamine analogs as the potential inhibitors of Plasmodium falciparum (P. falciparum; 3D7) in in-vitro cultures. All the listed compounds were also evaluated against crucial drug targets, plasmepsin II (Plm II) and IV (Plm IV), enzymes found in the digestive vacuole of the P. falciparum. Analog 10f showed inhibitory activities against both the enzymes Plm II and Plm IV (K-i, 1.93 +/- 0.29 mu M for Plm II; K-i, 1.99 +/- 0.05 mu M for Plm IV). Among all these analogs, compounds 10g selectively inhibited the activity of Plm IV (K-i, 0.84 +/- 0.08 mu M). In the in vitro screening assay, the growth inhibition of P. falciparum by both the analogs (IC50, 2.27 +/- 0.95 mu M for 10f; IC50, 3.11 +/- 0.65 mu M for 10g) displayed marked killing effect. A significant growth inhibition of the P. falciparum was displayed by analog 12c with IC50 value of 1.35 +/- 0.85 mu M, however, it did not show inhibitory activity against either Plms. The hemolytic assay suggested that the active compounds selectively inhibit the growth of the parasite. Further, potent analogs (10f and 12c) were evaluated for their cytotoxicity towards mammalian HepG2 and vero cells. The selectivity index (SI) values were noticed greater than 10 for both the analogs that suggested their poor toxicity. The present study indicates these analogs as putative lead structures and could serve as crucial for the development of new drug molecules.
机译:疟疾,特别是在地方国家仍然是对人类健康的威胁,是引领热带和亚热带地区死亡的原因。在此,我们探讨了新的C-2对称羟乙基胺类似物,作为体外培养中疟原虫(P.Falciparum; 3D7)的潜在抑制剂。还针对关键药物靶标,Plasmepsin II(PLM II)和IV(PLM IV),在P. falciparum的消化液体中发现的酶评估所有列出的化合物。模拟10F显示抑制反对酶PLM II和PLM IV(K-1,1.93 +/-0.29μm的抑制活性,用于PLM II; K-1,1.99 +/- 0.05 mu m)。在所有这些类似物中,化合物10g选择性地抑制PLM IV的活性(K-1,0.84 +/-0.08μm)。在体外筛选测定中,模拟(IC50,2.27 +/-0.95μm的P. falciparum的生长抑制; IC50,3.11 +/- 0.65 mu m为10g)显示出明显的杀伤效果。通过模拟12c,IC50值为1.35 +/-0.85μm的模拟12c,展示了P. falciparum的显着生长抑制,然而,它没有显示出对任何PLM的抑制活性。溶血测定表明,活性化合物选择性地抑制寄生虫的生长。此外,评估其对哺乳动物HepG2和Vero细胞的细胞毒性的强效类似物(10F和12C)。对于建议其毒性差的类似物,注意到选择性指数(SI)值大于10。本研究表明这些类似物作为推定的铅结构,可以作为新药分子的开发至关重要。

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