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Development and Validation of a Quantitative High-Throughput Fluorescent-Based Bioassay to Detect Schistosoma Viability

机译:定量高通量基于荧光的生物检测血吸虫生存能力的开发和验证

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摘要

BackgroundSchistosomiasis, caused by infection with the blood fluke Schistosoma, is responsible for greater than 200,000 human deaths per annum. Objective high-throughput screens for detecting novel anti-schistosomal targets will drive ‘genome to drug’ lead translational science at an unprecedented rate. Current methods for detecting schistosome viability rely on qualitative microscopic criteria, which require an understanding of parasite morphology, and most importantly, must be subjectively interpreted. These limitations, in the current state of the art, have significantly impeded progress into whole schistosome screening for next generation chemotherapies.
机译:背景血吸虫由血吸虫血吸虫感染引起,每年导致超过20万人死亡。用于检测新型抗血吸虫病靶标的客观高通量筛选将以前所未有的速度推动“基因组到药物”领先的转化科学。当前检测血吸虫病生存力的方法依赖于定性的微观标准,这要求了解寄生虫的形态,最重要的是必须主观地解释。在当前的现有技术中,这些局限性严重阻碍了对下一代化学疗法进行全血吸虫筛查的进展。

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