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Synthesis of Novel Ciprofloxacin-Based Hybrid Molecules toward Potent Antimalarial Activity

机译:基于新溴罗氟苯胺的杂化分子对有效的抗疟活性的合成

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Antimalarial drug resistance is a serious obstacle in the persistent quest to eradicate malaria. There is a need for potent chemical agents that are able to act on drug-resistant Plasmodium falciparum populations at reasonable concentrations without any related toxicity to the host. By rational drug design, we envisaged to address this issue by generating a novel hybrid drug possessing two pharmacophores that can act on two unique and independent targets within the cell. We synthesized a new class of ciprofloxacinbased hybrid molecules, which have been integrated with acridine, quinolone, sulphonamide, and cinnamoyl pharmacophores (1-4). We realized a potent chloroquinolone-ciprofloxacin-based antimalarial hybrid (2, CQ-CFX) whose mechanism of action is unlike that of its parent molecules indicating a unique biological target. CQ-CFX is not only potent against CQ-resistant and susceptible strains of Plasmodium falciparum at low nanomolar concentrations (IC50 values are 63.17 +/- 1.2 nM and 25.52 +/- 4.45 nM, respectively) but is also not toxic to mammalian and bacterial systems up to 20 mu M and 1 mu M, respectively.
机译:抗疟疾耐药性是持续寻求疟疾的持久寻求的严重障碍。需要有效的化学试剂,其能够以合理的浓度在耐药性疟原虫种群上作用,而没有任何相关的毒性。通过合理的药物设计,我们设想通过产生一种具有两种药物细胞的新型杂种药物来解决这个问题,该药物可以在细胞内的两个独特和独立的靶标上作用。我们合成了一类新的CiProfloxacinabased杂化分子,其已与吖啶,喹诺酮,磺酰胺和肉桂酰基药物(1-4)一体化。我们意识到一种有效的氯喹诺酮 - 环丙沙星的抗疟杂化杂交(2,CQ-CFX),其作用机制不同于其母体分子的作用机制不同。 CQ-CFX不仅有效地针对低纳米摩尔浓度的疟原虫和敏感的疟原虫菌株(IC 50值分别为63.17 +/- 1.2nm和25.52 +/- 4.45nm,但也没有哺乳动物和细菌的毒性系统分别高达20μm和1μm。

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