Dipartimento di Scienze Farmaceutiche, Università degli Studi di Milano, Via Mangiagalli 25, 20133 Milan, Italy.
Bioorg Med Chem. 2012 Oct 1;20(19):5980-5. doi: 10.1016/j.bmc.2012.07.041. Epub 2012 Jul 31.
Recently the N-(-)-lupinyl-derivative of 7-chloro-4-aminoquinoline ((-)-AM-1; 7-chloro-4-{N-[(1S,9aR)(octahydro-2H-quinolizin-1-yl)methyl]amino}quinoline) showed potent in vitro and in vivo activity against both Chloroquine susceptible and resistant strains of Plasmodium falciparum. However, (-)-AM-1 is synthesized starting from (-)-lupinine, an expensive alkaloid isolated from Lupinus luteus whose worldwide production is not sufficient, at present, for large market purposes. To overcome this issue, the corresponding racemic compound, derived from synthetic (±)-lupinine was considered a cheaper alternative for the development of a novel antimalarial agent. Therefore, the racemic and the 7-chloro-4-(N-(+)-lupinyl)aminoquinoline ((±)-AM-1; (+)-AM-1) were synthesized and their in vitro antimalarial activity and cytotoxicity compared with those of (-)-AM-1. The (+)-lupinine required for the synthesis of (+)-AM-1 was obtained through a not previously described lipase catalyzed kinetic resolution of (±)-lupinine. In terms of antimalarial activity, (±)-AM1 and (+)-AM1 demonstrated very good activity in vitro against both CQ-R and CQ-S strains of P. falciparum (range IC(50) 16-35 nM), and low toxicity against human normal cell lines (therapeutic index >1000), comparable with that of (-)-AM1. These results confirm that the racemate (±)-AM1 could be considered as a potential antimalarial agent, ensuring a decrease of costs of synthesis compared to (-)-AM1.
最近,N-(-)-羽扇豆衍生的 7-氯-4-氨基喹啉 ((-)-AM-1;7-氯-4-{N-[(1S,9aR)(八氢-2H-喹啉-1-基)甲基]氨基}喹啉) 对氯喹敏感和耐药的恶性疟原虫株均显示出强大的体外和体内活性。然而,(-)-AM-1 是从 (-)-羽扇豆碱合成的,(-)-羽扇豆碱是从 Lupinus luteus 中分离出来的昂贵生物碱,目前其全球产量不足以满足大规模市场需求。为了解决这个问题,考虑到从合成的 (±)-羽扇豆碱衍生的相应外消旋化合物是开发新型抗疟药物的更廉价替代品。因此,合成了外消旋和 7-氯-4-(N-(+)-羽扇豆基)氨基喹啉 ((±)-AM-1;(+)-AM-1),并比较了它们与 (-)-AM-1 的体外抗疟活性和细胞毒性。用于合成 (+)-AM-1 的 (+)-羽扇豆碱是通过一种以前未描述的脂肪酶催化动力学拆分 (±)-羽扇豆碱获得的。就抗疟活性而言,(±)-AM1 和 (+)-AM1 对恶性疟原虫的 CQ-R 和 CQ-S 株均显示出良好的体外活性(IC50 范围为 16-35 nM),对人正常细胞系的毒性低(治疗指数>1000),与 (-)-AM1 相当。这些结果证实外消旋体 (±)-AM1 可被视为一种有潜力的抗疟药物,与 (-)-AM1 相比,可降低合成成本。