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Novel hybrid molecules based on 15-membered azalide as potential antimalarial agents.

机译:基于15元偶氮化的新型杂化分子作为潜在的抗疟剂。

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摘要

Malaria remains the most prevalent tropical disease, and due to the spread of resistant parasites novel therapeutics are urgently needed. Azithromycin has shown potential in malaria treatment so we designed hybrid azalide molecules with the aim to improve activity against and selectivity for the malaria parasite. Novel hybrid molecules comprising 4-aminoquinoline moiety covalently liked to 15-membered azalide scaffold at position C-3' were synthesized and biologically evaluated. Antimalarial testing against Plasmodium falciparum sensitive and resistant strains confirmed the improved in vitro activity over azithromycin and chloroquine. Selectivity of the compounds (HepG2 IC(50)/P. falciparum IC(50) ratio) for the parasite was high (100-2700) and their antibacterial activity diminished. Even though oral bioavailability determined for compound 12 was low, novel quinoline C-3'-substituted 15-membered azalides represent an interesting subclass of antimalarial macrolides that need further research and evaluation.
机译:疟疾仍然是最普遍的热带疾病,由于抗性寄生虫的蔓延,迫切需要进行新的治疗剂。阿奇霉素在疟疾治疗中显示出潜力,因此我们设计了杂交氮化物分子,其目的是改善疟疾寄生虫的活性和选择性。包含4-氨基喹啉部分的新型杂化分子在C-3'位于C-3'时共价含有15元氮化物支架,并进行生物学评价。对抗疟原虫敏感和抗性菌株的抗疟疾测试证实了氮霉素和氯喹的改善的体外活性。寄生虫的化合物的选择性(HepG2 IC(50)/ p。寄生虫的Falciparum Ic(50)比)高(100-2700),其抗菌活性减少。尽管测定了对化合物12的口腔生物利用度低,但新型喹啉C-3'-取代的15-元偶氮衍生物代表了需要进一步的研究和评估的抗疟大致性的有趣亚类。

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