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Nowhere to hide : interrogating different metabolic parameters of Plasmodium falciparum gametocytes in a transmission blocking drug discovery pipeline towards malaria elimination

机译:无处可隐藏:在传播阻断药物发现管道消除疟疾的过程中,询问恶性疟原虫配子体的不同代谢参数

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摘要

BACKGROUND : The discovery of malaria transmission-blocking compounds is seen as key to malaria elimination strategies and gametocyte-screening platforms are critical filters to identify active molecules. However, unlike asexual parasite assays measuring parasite proliferation, greater variability in end-point readout exists between different gametocytocidal assays. This is compounded by difficulties in routinely producing viable, functional and stage-specific gametocyte populations. Here, a parallel evaluation of four assay platforms on the same gametocyte populations was performed for the first time. This allowed the direct comparison of the ability of different assay platforms to detect compounds with gametocytocidal activity and revealed caveats in some assay readouts that interrogate different parasite biological functions. METHODS : Gametocytogenesis from Plasmodium falciparum (NF54) was optimized with a robust and standardized protocol. ATP, pLDH, luciferase reporter and PrestoBlue® assays were compared in context of a set of 10 reference compounds. The assays were performed in parallel on the same gametocyte preparation (except for luciferase reporter lines) using the same drug preparations (48 h). The remaining parameters for each assay were all comparable. RESULTS : A highly robust method for generating viable and functional gametocytes was developed and comprehensively validated resulting in an average gametocytaemia of 4 %. Subsequent parallel assays for gametocytocidal activity indicated that different assay platforms were not able to screen compounds with variant chemical scaffolds similarly. Luciferase reporter assays revealed that synchronized stage-specific gametocyte production is essential for drug discovery, as differential susceptibility in various gametocyte developmental populations is evident. CONCLUSIONS : With this study, the key parameters for assays aiming at testing the gametocytocidal activity of potential transmission blocking molecules against Plasmodium gametocytes were accurately dissected. This first and uniquely comparative study emphasizes differential effects seen with the use of different assay platforms interrogating variant biological systems. Whilst this data is informative from a biological perspective and may provide indications of the drug mode of action, it does highlight the care that must be taken when screening broaddiversity chemotypes with a single assay platform against gametocytes for which the biology is not clearly understood.
机译:背景:疟疾传播阻断化合物的发现被视为消除疟疾策略的关键,配子细胞筛选平台是识别活性分子的关键过滤器。但是,与测量寄生虫增殖的无性寄生虫试验不同,在不同的杀细胞杀伤试验之间,终点读数存在较大差异。在常规地产生可行的,功能性的和阶段特异性的配子细胞群体的困难中,这变得更加复杂。在这里,首次对相同配子细胞群上的四个测定平台进行了并行评估。这样就可以直接比较不同测定平台检测具有杀细胞杀灭活性的化合物的能力,并揭示了某些测定读数中的警告,这些读数询问了不同的寄生生物功能。方法:恶性疟原虫(NF54)的细胞生成采用了可靠且标准化的方案进行了优化。在一组10种参考化合物的背景下比较了ATP,pLDH,荧光素酶报告基因和PrestoBlue®检测方法。使用相同的药物制剂(48小时)对相同的配子体细胞制剂(萤光素酶报告基因系除外)平行进行测定。每种测定的其余参数都是可比较的。结果:开发了一种高度健壮的方法来生成可行的功能性配子细胞,并进行了全面验证,平均配伍细胞凋亡率为4%。随后进行的杀细胞杀伤活性平行测定表明,不同的测定平台无法类似地筛选具有变异化学支架的化合物。萤光素酶报告基因检测表明,同步阶段特异性配子体的产生对于药物发现至关重要,因为在各种配子体发育人群中明显的易感性是明显的。结论:这项研究,旨在测试潜在的传递阻滞分子对疟原虫配子体细胞的杀细胞活性的分析的关键参数被准确地解剖。这项首次且独特的比较研究强调了通过使用不同的测定平台询问变异的生物系统而观察到的差异效应。尽管从生物学的角度来看这些数据是有益的,并且可以提供药物作用方式的指征,但它的确突出了当用单一的检测平台针对配子细胞筛选广泛多样性的化学型时,必须注意的工作,而配子细胞尚不清楚生物学。

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