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Enhanced Transmission of Drug-Resistant Parasites to Mosquitoes following Drug Treatment in Rodent Malaria

机译:在啮齿动物疟疾中进行药物治疗后,抗药性寄生虫向蚊子的传播增强。

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摘要

The evolution of drug resistant Plasmodium parasites is a major challenge to effective malaria control. In theory, competitive interactions between sensitive parasites and resistant parasites within infections are a major determinant of the rate at which parasite evolution undermines drug efficacy. Competitive suppression of resistant parasites in untreated hosts slows the spread of resistance; competitive release following treatment enhances it. Here we report that for the murine model Plasmodium chabaudi, co-infection with drug-sensitive parasites can prevent the transmission of initially rare resistant parasites to mosquitoes. Removal of drug-sensitive parasites following chemotherapy enabled resistant parasites to transmit to mosquitoes as successfully as sensitive parasites in the absence of treatment. We also show that the genetic composition of gametocyte populations in host venous blood accurately reflects the genetic composition of gametocytes taken up by mosquitoes. Our data demonstrate that, at least for this mouse model, aggressive chemotherapy leads to very effective transmission of highly resistant parasites that are present in an infection, the very parasites which undermine the long term efficacy of front-line drugs.
机译:耐药疟原虫寄生虫的进化是有效控制疟疾的主要挑战。从理论上讲,感染中敏感寄生虫和耐药性寄生虫之间的竞争性相互作用是决定寄生虫进化破坏药物功效的速率的主要决定因素。在未经治疗的宿主中竞争性抑制耐药性寄生虫会减慢耐药性的传播;治疗后的竞争释放增强了它。在这里,我们报告说,对于鼠模型疟原虫,与药物敏感的寄生虫共感染可以阻止最初罕见的抗药性寄生虫向蚊子的传播。化疗后去除药物敏感性寄生虫,可使抗药性寄生虫像没有治疗的敏感性寄生虫一样成功地传播至蚊子。我们还显示宿主静脉血中配子细胞种群的遗传组成准确反映了蚊子摄取的配子细胞的遗传组成。我们的数据表明,至少对于这种小鼠模型而言,积极的化学疗法可导致感染中存在的高抗药性寄生虫非常有效地传播,而这种寄生虫会破坏一线药物的长期疗效。

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