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An automated climbing apparatus to measure chemotherapy-induced neurotoxicity in Drosophila melanogaster

机译:一种自动攀登设备用于测量果蝇中化学疗法诱发的神经毒性

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摘要

We have developed a novel model system in Drosophila melanogaster to study chemotherapy-induced neurotoxicity in adult flies. Neurological deficits were measured using a manual geotactic climbing assay. The manual assay is commonly used; however, it is laborious, time-consuming, subject to human error and limited to observing one sample at a time. We have designed and built a new automated fly-counting apparatus that uses a “video capture-particle counting technology” to automatically measure 10 samples at a time, with 20 flies per sample. Climbing behavior was assessed manually, as in our previous studies, and with the automated apparatus within the same experiment yielding statistically similar results. Both climbing endpoints as well as the climbing rate can be measured in the apparatus, giving the assay more versatility than the manual assay. Automation of our climbing assay reduces variability, increases productivity and enables high throughput drug screens for neurotoxicity.
机译:我们已经在果蝇中开发了一种新型模型系统,以研究化学疗法诱导的成年果蝇神经毒性。使用手动地理定向爬升测定法测量神经功能缺损。手动分析是常用的方法;然而,这很费力,费时,易受人为错误并且仅限于一次观察一个样品。我们设计并建造了一种新的自动飞行计数设备,该设备使用“视频捕获粒子计数技术”来一次自动测量10个样品,每个样品有20只苍蝇。像我们以前的研究一样,手动评估爬坡行为,并在同一实验中使用自动装置得出统计学上相似的结果。可以在设备中测量两个攀爬终点以及攀爬速率,因此该检测方法比手动检测方法更具通用性。我们的攀登测定的自动化降低了变异性,提高了生产率,并实现了高通量药物筛查神经毒性。

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