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Preconcentration of diluted mixed-species samples following separation and collection in a micro–nanofluidic device

机译:在微纳流控装置中分离和收集后对稀释的混合物种样品进行预浓缩

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摘要

A microfluidic device consisting of a nanoscale Nafion membrane and a polydimethylsiloxane microchannel is proposed for the preconcentration of diluted multi-mixed species samples then following separation and collection. When an electric field is applied across the microchip, an accumulation of the mixed-species sample occurs at the junction between the microchannel and the membrane by means of ion concentration polarization effect. A separation of the sample then takes place due to the difference in the electrophoretic mobilities of the sample components. Finally, the component of interest is guided to a collection reservoir by manipulating the external potential configuration and is trapped in place by means of a magnetically actuated valve. The preconcentration performance of the proposed device is evaluated in both straight and convergent microchannels using a fluorescein isothiocyanate labeled bovine serum albumin (FITC-BSA) sample. It is shown that a preconcentration factor of 40 times can be achieved using a straight microchannel. By contrast, the preconcentration factor increases to 50 times when using a convergent channel. The practical feasibility of the proposed device is demonstrated by performing the preconcentration, separation, and collection of a mixed FITC-BSA and Tetramethylrhodamine sample.
机译:提出了一种由纳米级Nafion膜和聚二甲基硅氧烷微通道组成的微流控装置,用于预浓缩稀释的多种混合物样品,然后进行分离和收集。当在整个微芯片上施加电场时,通过离子浓度极化效应,混合物种样品的积累会在微通道和膜之间的接合处发生。然后由于样品组分的电泳迁移率的差异而导致样品的分离。最后,通过操纵外部电势配置将感兴趣的组件引导到收集容器中,并通过电磁阀将其捕获到位。使用荧光素异硫氰酸酯标记的牛血清白蛋白(FITC-BSA)样品,在直线和会聚微通道中评估了所提出设备的预浓缩性能。结果表明,使用笔直的微通道可以达到40倍的预浓缩系数。相比之下,使用会聚通道时,预浓缩系数增加到50倍。通过对混合的FITC-BSA和四甲基罗丹明样品进行预浓缩,分离和收集,证明了所提出装置的实际可行性。

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