首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >High-Efficiency Single-Molecule Detection within Trapped Aqueous Microdroplets
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High-Efficiency Single-Molecule Detection within Trapped Aqueous Microdroplets

机译:捕获的水微滴中的高效单分子检测

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摘要

Aqueous droplets were used as a tool to confine a molecular population and enable highly efficient detection at the single-molecule level. Picoliter-sized aqueous droplets were generated using classical multiphase microfluidics with an aqueous stream containing the analyte under investigation and an oil carrier phase. The droplets were then localized and isolated in specially designed trapping areas within the microfluidic channel to provide a static environment for detection of the encapsulated molecules. We show that by continuously flowing the carrier oil phase while holding the aqueous stationary, we can significantly improve on measuring repeat single-molecule events. Further, we find that the flowing oil stream induces a circulation within the trapped droplets which is proportional to the volumetric flow velocity. This circulation phenomenon allows a given molecule to be detected multiple times during an experiment and can therefore be used for performing time-dependent single-molecule analysis.
机译:水滴被用作限制分子种群的工具,并能够在单分子水平上进行高效检测。使用经典的多相微流控技术,以含有研究中的分析物和油载体相的水流产生皮升大小的水滴。然后将液滴定位并隔离在微流体通道内经过特殊设计的捕集区域中,以提供用于检测封装分子的静态环境。我们表明,通过在保持水性固定的同时使载油相连续流动,我们可以显着改善重复单分子事件的测量。此外,我们发现流动的油流在捕获的液滴内引起了与体积流速成比例的循环。这种循环现象可以在实验过程中多次检测给定的分子,因此可以用于执行时间相关的单分子分析。

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