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An integrated microfluidic device for C. elegans early embryogenesis studies and drug assays

机译:用于秀丽隐杆线虫早期胚胎发生研究和药物测定的集成微流控设备

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The Caenorhabditis elegans embryo is a widely used model for the functional analysis of dynamic cellular processes, such as chromosome segregation, cytokinesis or lineage analysis. However, the conventional embryo preparation method that relies on manually dissecting gravid worms to extract embryos is somewhat time consuming and does not lend itself to high throughput assays. Here, we report a fully integrated microfluidic approach for C. elegans early embryogenesis assays with unprecedented accuracy and throughput. The device consists of a compressible microfluidic pillar-array chamber for robust and fast on-chip extraction of embryos from the uterus of gravid nematodes. Subsequently, embryos are immobilized by automated fluidic transfer in a microtrap array for individual tracking of a large number of embryos, including fragile mutants with drug-permeable eggshells. Our device allows high-resolution live imaging of very early events in embryogenesis, starting from the one-cell stage. We also demonstrate the feasibility of well-controlled compound application in versatile microfluidic pharmacological assays performed on early embryos.
机译:秀丽隐杆线虫胚胎是广泛用于动态细胞过程功能分析的模型,例如染色体分离,胞质分裂或谱系分析。但是,传统的手动制备胚胎的方法依赖于人工解剖妊娠的蠕虫来提取胚胎,这是比较耗时的,并且无法进行高通量检测。在这里,我们报告线虫的早期胚胎发生测定的完全集成的微流控方法,具有前所未有的准确性和吞吐量。该设备包括一个可压缩的微流控柱阵列腔,用于从妊娠线虫的子宫中可靠,快速地从芯片上提取胚胎。随后,通过自动流体转移将胚胎固定在微阱阵列中,以单独跟踪大量胚胎,包括具有药物可渗透性蛋壳的易碎突变体。我们的设备允许从单细胞阶段开始,对胚胎发生中非常早期的事件进行高分辨率的实时成像。我们还证明了在早期胚胎上进行的多功能微流控药理学分析中良好控制化合物应用的可行性。

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