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Isothermal Microcalorimetry, a New Tool to Monitor Drug Action against Trypanosoma brucei and Plasmodium falciparum

机译:等温微量热法,一种监测针对布鲁氏锥虫和恶性疟原虫药物作用的新工具

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Isothermal microcalorimetry is an established tool to measure heat flow of physical, chemical or biological processes. The metabolism of viable cells produces heat, and if sufficient cells are present, their heat production can be assessed by this method. In this study, we investigated the heat flow of two medically important protozoans, Trypanosoma brucei rhodesiense and Plasmodium falciparum. Heat flow signals obtained for these pathogens allowed us to monitor parasite growth on a real-time basis as the signals correlated with the number of viable cells. To showcase the potential of microcalorimetry for measuring drug action on pathogenic organisms, we tested the method with three antitrypanosomal drugs, melarsoprol, suramin and pentamidine and three antiplasmodial drugs, chloroquine, artemether and dihydroartemisinin, each at two concentrations on the respective parasite. With the real time measurement, inhibition was observed immediately by a reduced heat flow compared to that in untreated control samples. The onset of drug action, the degree of inhibition and the time to death of the parasite culture could conveniently be monitored over several days. Microcalorimetry is a valuable element to be added to the toolbox for drug discovery for protozoal diseases such as human African trypanosomiasis and malaria. The method could probably be adapted to other protozoan parasites, especially those growing extracellularly.
机译:等温微量热法是一种用于测量物理,化学或生物过程的热流的成熟工具。活细胞的新陈代谢会产生热量,如果存在足够的细胞,则可以通过这种方法评估它们的热量产生。在这项研究中,我们研究了两个医学上重要的原生动物,即布鲁氏锥虫和恶性疟原虫的热流。为这些病原体获得的热流信号使我们能够实时监测寄生虫的生长,因为这些信号与活细胞的数量相关。为了展示微量量热法在测量对病原生物的药物作用方面的潜力,我们用三种抗锥虫药,美拉索罗,苏拉明和喷他idine以及三种抗疟药,氯喹,蒿甲醚和双氢青蒿素在各自的寄生虫上以两种浓度测试了该方法。通过实时测量,与未处理的对照样品相比,通过减少的热流可以立即观察到抑制作用。可以方便地监测寄生虫培养物的起效,抑制程度和死亡时间。微量量热法是一种有价值的元素,可添加到工具箱中,以发现原生动物疾病(例如人类非洲锥虫病和疟疾)的药物。该方法可能适用于其他原生动物寄生虫,尤其是那些在细胞外生长的寄生虫。

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