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A continuous-flow C. elegans sorting system with integrated optical fiber detection and laminar flow switching

机译:具有集成光纤检测和层流切换功能的连续流线虫分选系统

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摘要

We present a high-throughput continuous-flow C. elegans sorting device that works based on integrated optical fiber detection and laminar flow switching. Two types of genetically engineered nematodes are allowed to flow into the device and their genotypes are detected based on their fluorescence, without the need for immobilization, by integrated optical fibers. A novel dynamic fluidic switch sorts the nematodes to desired outlets. By changing input pressures of the control inlets, the laminar flow path is altered to steer the nematodes to appropriate outlets. Compared to previously reported microfluidic C. elegans sorting devices, sorting in this system is conducted in a continuous flow environment without any immobilization technique or need for multilayer mechanical valves to open and close the outlets. The continuous flow sorter not only increases the throughput but also avoids any kind of invasive or possibly damaging mechanical or chemical stimulus. We have characterized both the detection and the switching accuracy of the sorting device at different flow rates, and efficiencies approaching 100% can be achieved with a high throughput of about one nematode per second. To confirm that there was no significant damage to C. elegans following sorting, we recovered the sorted worms, finding no deaths and no differences in behavior and propagation compared to control.
机译:我们提出了一种高通量连续流线虫分类装置,该装置基于集成的光纤检测和层流切换而工作。允许两种类型的基因工程线虫流入设备,并通过集成光纤根据其荧光检测其基因型,而无需固定。一种新颖的动态射流开关将线虫分类到所需的出口。通过改变控制入口的输入压力,可以改变层流路径,以将线虫引导至适当的出口。与以前报道的微流体秀丽隐杆线虫分选设备相比,该系统中的分选在连续流动的环境中进行,无需任何固定技术,也不需要多层机械阀来打开和关闭出口。连续流分类器不仅增加了产量,而且避免了任何形式的侵入性或可能破坏性的机械或化学刺激。我们已经表征了在不同流速下分选设备的检测精度和切换精度,并且可以以大约每秒一个线虫的高通量实现接近100%的效率。为了确认分选后对秀丽隐杆线虫没有明显损害,我们回收了分选的蠕虫,与对照组相比,没有发现死亡,行为和繁殖也没有差异。

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