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Synthesis, Structure-activity relationship, and mode-of-action studies of antimalarial reversed chloroquine compounds

机译:抗疟疾逆向氯喹化合物的合成,构效关系和作用方式研究

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摘要

We have previously shown that a "reversed chloroquine (RCQ)" molecule, composed of a chloroquine-like moiety and a resistance reversal-like moiety, can overcome chloroquine resistance in P. falciparum (Burgess, S. J.; Selzer, A.; Kelly, J. X.; Smilkstein, M. J.; Riscoe, M. K.; Peyton, D. H. J. Med. Chem. 2006, 49, 5623. Andrews, S.; Burgess, S. J.; Skaalrud, D.; Kelly, J. X.; Peyton, D. H. J. Med. Chem. 2010, 53, 916). Here, we present an investigation into the Structure-activity relationship of the RCQ structures, resulting in an orally active molecule with good in vitro and in vivo antimalarial activity. We also present evidence of the mode of action, indicating that the RCQ molecules inhibit hemozoin formation in the parasite's digestive vacuole in a manner similar to that of chloroquine.
机译:先前我们已经表明,由类似氯喹部分和抗性反转部分组成的“反向氯喹(RCQ)”分子可以克服恶性疟原虫中的氯喹抗性(Burgess,SJ; Selzer,A .; Kelly, JX; Smilkstein,MJ; Riscoe,MK; Peyton,DHJ Med。Chem。2006,49,5623. Andrews,S .; Burgess,SJ; Skaalrud,D .; Kelly,JX; Peyton,DHJ Med。Chem。2010, 53,916)。在这里,我们提出了对RCQ结构的结构-活性关系的研究,从而产生了具有良好的体外和体内抗疟活性的口服活性分子。我们还提供了作用方式的证据,表明RCQ分子以类似于氯喹的方式抑制了寄生虫消化液中的溶血素形成。

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