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Cross-Contamination Avoidance for Droplet Routing in Digital Microfluidic Biochips

机译:数字微流控生物芯片中液滴路径的交叉污染避免

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Recent advances in digital microfluidics have enabled droplet-based biochip devices for DNA sequencing, immunoassays, clinical chemistry, and protein crystallization. Since cross-contamination between droplets of different biomolecules can lead to erroneous outcomes for bioassays, the avoidance of cross-contamination during droplet routing is a key design challenge for biochips. We propose a droplet-routing method that avoids cross-contamination in the optimization of droplet flow paths. The proposed approach targets disjoint droplet routes and synchronizes wash-droplet routing with functional droplet routing, in order to reduce the duration of droplet routing while avoiding the cross-contamination between different droplet routes. In order to avoid cross-contamination between successive routing steps, an optimization technique is used to minimize the number of wash operations that must be used between successive routing steps. Two real-life biochemical applications are used to evaluate the proposed droplet-routing methods.
机译:数字微流控技术的最新进展已使基于液滴的生物芯片设备能够用于DNA测序,免疫测定,临床化学和蛋白质结晶。由于不同生物分子的液滴之间的交叉污染可能导致生物测定的错误结果,因此在液滴布线过程中避免交叉污染是生物芯片面临的关键设计挑战。我们提出了一种液滴路由方法,可以在优化液滴流动路径时避免交叉污染。所提出的方法针对不相交的液滴路径并使洗涤液滴路径与功能性液滴路径同步,以便减少液滴路径的持续时间,同时避免不同液滴路径之间的交叉污染。为了避免连续的布线步骤之间的交叉污染,使用一种优化技术来最小化在连续的布线步骤之间必须使用的清洗操作的数量。两个现实生活中的生化应用程序用于评估所提出的液滴路由方法。

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