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Automated on-chip rapid microscopy, phenotyping and sorting of C. elegans

机译:线虫的自动片上快速显微镜检查,表型和分选

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摘要

Microscopy, phenotyping and visual screens are frequently applied to model organisms in combination with genetics. Although widely used, these techniques for multicellular organisms have mostly remained manual and low-throughput. Here we report the complete automation of sample handling, high-resolution microscopy, phenotyping and sorting of Caenorhabditis elegans. The engineered microfluidic system, coupled with customized software, has enabled high-throughput, high-resolution microscopy and sorting with no human intervention and may be combined with any microscopy setup. The microchip is capable of robust local temperature control, self-regulated sample-loading and automatic sample-positioning, while the integrated software performs imaging and classification of worms based on morphological and intensity features. We demonstrate the ability to perform sensitive and quantitative screens based on cellular and subcellular phenotypes with over 95% accuracy per round and a rate of several hundred worms per hour. Screening time can be reduced by orders of magnitude; moreover, screening is completely automated.
机译:显微镜,表型和目视筛查经常结合遗传学应用于模型生物。尽管已被广泛使用,但这些用于多细胞生物的技术大部分仍然是手动的且低通量的。在这里,我们报告了秀丽隐杆线虫的样品处理,高分辨率显微镜,表型和分拣的完全自动化。精心设计的微流体系统,加上定制的软件,无需人工干预即可实现高通量,高分辨率的显微镜和分选,并且可以与任何显微镜设置结合使用。该微芯片能够进行强大的局部温度控制,自我调节的样品加载和自动的样品定位,而集成的软件则根据形态和强度特征对蠕虫进行成像和分类。我们展示了基于细胞和亚细胞表型执行敏感和定量筛选的能力,每轮准确率超过95%,每小时蠕虫的发病率超过数百。筛选时间可以减少几个数量级;此外,筛选是完全自动化的。

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