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Role of Known Molecular Markers of Resistance in the Antimalarial Potency of Piperaquine and Dihydroartemisinin In Vitro

机译:已知抗药性分子标记在哌喹和二氢青蒿素体外抗疟药效力中的作用

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摘要

Using a range of laboratory-adapted and genetically modified Plasmodium falciparum parasite isolates, we investigated the interaction between dihydroartemisinin and piperaquine (PIP), the individual components of an artemisinin combination therapy currently under development, in addition to the role of known drug resistance genes in parasite susceptibility in vitro. All but one parasite line investigated displayed an interaction of dihydroartemisinin and PIP that was antagonistic, although the degree of antagonism was isolate dependent. In terms of resistance markers, the pfcrt haplotypes CVIET and SVMNT were positively associated with reduced sensitivity to PIP, with parasites carrying the South American CQR (SVMNT) allele being generally less sensitive than CVIET parasites. Parasites carrying the CQS (CVMNK) allele displayed a further increase in PIP sensitivity compared with CVIET and SVMNT parasites. Our data indicate that PIP sensitivity was not affected by pfmdr1 sequence status, despite positive correlations between the structurally related compound amodiaquine and pfmdr1 mutations in other studies. In contrast, neither the pfcrt nor pfmdr1 sequence status had any significant impact on susceptibility to dihydroartemisinin.
机译:使用一系列经过实验室适应和基因改造的恶性疟原虫寄生虫分离株,我们研究了双氢青蒿素与哌喹(PIP)之间的相互作用,该药物是目前正在开发的青蒿素联合疗法的各个组成部分,此外还包括已知的耐药基因体外寄生虫敏感性。除了一个寄生虫系外,其他所有研究都显示了双氢青蒿素与PIP的相互作用具有拮抗作用,尽管拮抗作用的程度是独立的。就抗药性标记而言,pfcrt单体型CVIET和SVMNT与对PIP的敏感性降低呈正相关,携带南美CQR(SVMNT)等位基因的寄生虫通常不如CVIET寄生虫敏感。与CVIET和SVMNT寄生虫相比,携带CQS(CVMNK)等位基因的寄生虫在PIP敏感性上进一步提高。我们的数据表明,PIP敏感性不受pfmdr1序列状态的影响,尽管在其他研究中与结构相关的化合物氨二喹与pfmdr1突变之间存在正相关。相比之下,pfcrt和pfmdr1序列的状态对双氢青蒿素的敏感性均无显着影响。

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