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Sampling and Electrophoretic Analysis of Segmented Flow Streams Using Virtual Walls in a Microfluidic Device

机译:在微流控设备中使用虚拟壁对分段流进行采样和电泳分析

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摘要

A method for sampling and electrophoretic analysis of aqueous plugs segmented in a stream of immiscible oil is described. In the method, an aqueous buffer and oil stream flow parallel to each other to form a stable virtual wall in a microfabricated K-shaped fluidic element. As aqueous sample plugs in the oil stream make contact with the virtual wall coalescence occurs and sample is electrokinetically transferred to the aqueous stream. Using this virtual wall, two methods of injection for channel electrophoresis were developed. In the first, discrete sample zones flow past the inlet of an electrophoresis channel and a portion is injected by electroosmotic flow, termed the “discrete injector”. With this approach at least 800 plugs could be injected without interruption from a continuous segmented stream with 5.1% RSD in peak area. This method generated up to 1,050 theoretical plates; although analysis of the injector suggested that improvements may be possible. In a second method, aqueous plugs are sampled in a way that allows them to form a continuous stream that is directed to a microfluidic cross-style injector, termed the “desegmenting injector”. This method does not analyze each individual plug but instead allows periodic sampling of a high-frequency stream of plugs. Using this system at least 1000 injections could be performed sequentially with 5.8% RSD in peak area and 53,500 theoretical plates. This method was demonstrated to be useful for monitoring concentration changes from a sampling device with 10 s temporal resolution. Aqueous plugs in segmented flows have been applied to many different chemical manipulations including synthesis, assays, sampling processing and sampling. Nearly all such studies have used optical methods to analyze plug contents. This method offers a new way to analyze such samples and should enable new applications of segmented flow systems.
机译:描述了一种对在不混溶的油流中分段的水性塞进行采样和电泳分析的方法。在该方法中,水性缓冲液和油流彼此平行流动,以在微型K型流体元件中形成稳定的虚拟壁。当油流中的含水样品塞与虚拟壁接触时,会发生聚结,并将样品电动转移到含水流中。使用该虚拟壁,开发了两种用于通道电泳的注射方法。首先,离散的样品区流过电泳通道的入口,一部分通过电渗流注入,称为“离散进样器”。通过这种方法,可以注入至少800个塞子,而不会受到峰面积RSD为5.1%的连续分段流的干扰。该方法最多可生成1,050个理论塔板。尽管对喷油器的分析表明改进是可能的。在第二种方法中,以允许水塞形成连续流的方式对水塞进行采样,该连续流被引导至微流体十字型注射器,称为“细分注射器”。此方法不分析每个单独的插头,而是允许定期采样插头的高频流。使用该系统,可以连续进行至少1000次进样,峰面积的RSD为5.8%,理论塔板数为53,500。实践证明,该方法可用于以10 s的时间分辨率监视采样设备中的浓度变化。分段流动中的水塞已应用于许多不同的化学操作,包括合成,测定,采样处理和采样。几乎所有此类研究都使用光学方法分析了塞子含量。该方法提供了一种分析此类样品的新方法,并应启用分段流系统的新应用。

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