Department of Pharmaceutical Chemistry, Bhupal Nobles' College of Pharmacy, Bhupal Nobles' University, Udaipur, Rajasthan 313001, India.
Department of Pharmaceutical Chemistry, Bhupal Nobles' College of Pharmacy, Bhupal Nobles' University, Udaipur, Rajasthan 313001, India.
Bioorg Chem. 2024 Oct;151:107674. doi: 10.1016/j.bioorg.2024.107674. Epub 2024 Jul 24.
Antimalarial drug resistance is a major obstacle in the ongoing quest against malaria. The disease affects half of the world's population. The majority of them are toddlers and pregnant women. Needed a potent compound to act on drug-resistant Pf at appropriate concentrations without endangering the host. Envisaged solving this issue through rational drug design by creating a novel hybrid drug possessing two pharmacophores that can act on two marvellous and independent aims within the cell. Synthesized a new series of substituted 4-phenyl-1,2,3,6-tetrahydropyridine (THP) 8-Aminoquinoline-based hybrid analogs which have been integrated with quinoline, chloroquine, pamaquine, and primaquine, which exhibited antimalarial activity against Pf. Out of thirteen 4-phenyl-1,2,3,6-THP appended 8-Aminoquinoline derivatives, the compounds 1j, 1e, 1b, and 1l have exhibited good antimalarial activity against chloroquine-sensitive (3D7) and chloroquine-resistant (RKL-9) strain with the minimum inhibitory concentration. Compound 1b was the most effective and showed consistently good potency against the drug-resistant (RKL-9) strain, although all other arrays showed good antimalarial efficacy. Additional docking and molecular dynamics studies were carried out at several targeting sites to quantify the structural parameters necessary for the activity.
抗疟药物耐药性是当前抗击疟疾的主要障碍。该疾病影响了全球一半的人口,其中大多数是幼儿和孕妇。需要一种有效的化合物,以适当的浓度作用于耐药性 Pf,而不会危及宿主。通过合理的药物设计,设想通过创建一种具有两个药效团的新型杂合药物来解决这个问题,这两个药效团可以在细胞内发挥两个奇妙而独立的作用。合成了一系列新的取代 4-苯基-1,2,3,6-四氢吡啶(THP)8-氨基喹啉基杂合类似物,这些类似物与喹啉、氯喹、伯氨喹和普马喹结合,具有抗 Pf 的抗疟活性。在十三个 4-苯基-1,2,3,6-THP 附加 8-氨基喹啉衍生物中,化合物 1j、1e、1b 和 1l 对氯喹敏感(3D7)和氯喹耐药(RKL-9)株均表现出良好的抗疟活性,最低抑制浓度。化合物 1b 是最有效的,并且对耐药性(RKL-9)株表现出一致的良好效力,尽管所有其他化合物都显示出良好的抗疟疗效。在几个靶位进行了额外的对接和分子动力学研究,以量化活性所需的结构参数。