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首页> 外文期刊>Malaria Journal >A semi-automated method for counting fluorescent malaria oocysts increases the throughput of transmission blocking studies
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A semi-automated method for counting fluorescent malaria oocysts increases the throughput of transmission blocking studies

机译:一种用于计数荧光性疟疾卵囊的半自动化方法,可以提高传播阻断研究的通量

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摘要

Background Malaria transmission is now recognized as a key target for intervention. Evaluation of the Plasmodium oocyst burden in the midguts of Anopheles spp. is important for many of assays investigating transmission. However, current assays are very time-consuming, manually demanding and patently subject to observer-observer variation. Methods This report presents the development of a method to rapidly, accurately and consistently determine oocyst burdens on mosquito midguts using GFP-expressing Plasmodium berghei and a custom-written macro for ImageJ. The counting macro was optimized and found to be fit-for-purpose by performing gametocyte membrane feeds with parasite infected blood. Dissected midguts were counted both manually and using the automated macro, then compared. The optimized settings for the macro were then validated by using it to determine the transmission blocking efficacies of two anti-malarial compounds - dehydroepiandrosterone sulphate and lumefantrine, in comparison to manually determined analysis of the same experiment. Results Concurrence of manual and macro counts was very high (R2 = 0.973) and reproducible. Estimated transmission blocking efficacies between manual and automated analysis were highly concordant, indicating that dehydroepiandrosterone sulphate has little or no transmission blocking potential, whilst lumefantrine strongly inhibits sporogony. Conclusion Recognizing a potential five-fold increase in throughput, the resulting reduction in personnel costs, and the absence of inter-operator/laboratory variation possible with this approach, this counting macro may be a benefit to the malaria community.
机译:背景知识疟疾传播现已被认为是干预的主要目标。评价疟原虫中肠的疟原虫卵囊负担。对于许多研究传播的测定非常重要。但是,当前的测定非常耗时,需要人工操作,并且显然会受到观察者与观察者之间的差异的影响。方法本报告介绍了使用表达GFP的伯氏疟原虫和ImageJ的自定义宏来快速,准确和一致地确定蚊子中肠卵囊负担的方法的开发。通过对寄生虫感染的血液进行配子细胞膜进料,可以优化计数宏,并发现其适合目的。手动和使用自动宏对解剖的中肠进行计数,然后进行比较。然后,与手动确定同一实验的分析相比,通过使用该宏来确定两种抗疟疾化合物硫酸脱氢表雄酮硫酸盐和氟美汀的传递阻滞效果,从而验证了该宏的优化设置。结果手动计数和宏计数的并发率很高(R2 = 0.973)并且可重现。手动和自动分析之间的估计传递阻断效率高度一致,表明硫酸脱氢表雄酮硫酸盐几乎没有或没有传递阻断潜力,而紫花苦参碱强烈抑制孢子形成。结论结论认识到使用这种方法的吞吐量可能会增加五倍,从而降低人员成本,并且不存在操作员/实验室之间的差异,该计数宏可能对疟疾社区有利。

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