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High-throughput sorting of eggs for synchronization of C. elegans in a microfluidic spiral chip

机译:用于微流体螺旋芯片中C.杆状杆菌同步的鸡蛋高吞吐量分选

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In this study, we report the use of a high-throughput microfluidic spiral chip to screen out eggs from a mixed age nematode population, which can subsequently be cultured to a desired developmental stage. For the sorting of a mixture containing three different developmental stages, eggs, L1 and L4, we utilized a microfluidic spiral chip with a trapezoidal channel to obtain a sorting efficiency of above 97% and a sample purity (SP) of above 80% for eggs at different flow rates up to 10 mL min(-1). The result demonstrated a cost-effective, simple, and highly efficient method for synchronizing C. elegans at a high throughput (similar to 4200 organisms per min at 6 mL min(-1)), while eliminating challenges such as clogging and non-reusability of membrane-based filtration. Due to its simplicity, our method can be easily adopted in the C. elegans research community.
机译:在这项研究中,我们报告使用高通量的微流体螺旋芯片从混合年龄的线虫群中筛选出卵,随后可以培养到所需的发育阶段。 对于含有三种不同发育阶段,卵,L1和L4的混合物的分选,我们利用微流体螺旋芯片,其具有梯形通道的分选效率,以获得97%的分选效率,并为鸡蛋的80%的样品纯度(SP)的分选效率 在不同的流速高达10 ml min(-1)。 结果证明了一种成本效益,简单,高效,高效的方法,用于在高通量上同步C.杆杆线虫(类似于6毫升每分钟的4200个生物(-1)),同时消除堵塞和不可重复使用的挑战 基于膜的过滤。 由于其简单性,我们的方法可以在C.杆杆线虫研究界中轻松采用。

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