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Single Molecule Ionic Current Sensing in Segmented Flow Microfluidics

机译:分段流动微流控中的单分子离子电流传感

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Herein, we describe the integration of two glass nanopores into a segmented flow microfluidic device with a view on enhancing the functionality of label free, single molecule nanopore sensors. Within a robust and mechanically stable platform, individual droplet compositions are distinguished before single molecule translocations from the droplet are detected electrochemically via the Coulter principle. This result is highly significant, combining the sensitivity of single molecule methods and their ability to overcome the clouding of the ensemble average with the "isolated microreactor" benefits of droplet microfluidics. Furthermore, devices as presented here provide the platform for the development of systems where the injection and extraction of single molecules allow droplet composition to be controlled at the molecular level.
机译:在这里,我们描述了两个玻璃纳米孔到分段流动微流控设备中的集成,以增强无标记的单分子纳米孔传感器的功能。在坚固且机械稳定的平台内,在通过库尔特原理电化学检测液滴的单分子易位之前,先对单个液滴的成分进行区分。该结果非常有意义,将单分子方法的灵敏度及其克服总体平均值浑浊的能力与液滴微流控技术的“隔离微反应器”优势相结合。此外,此处介绍的设备为开发系统提供了平台,在该系统中,单分子的注入和提取可将液滴组成控制在分子水平。

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