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Ion concentration polarization on paper-based microfluidic devices and its application to preconcentrate dilute sample solutions

机译:纸基微流控设备上的离子浓差极化及其在预浓缩稀样品溶液中的应用

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摘要

Microfluidic paper-based analytical devices (μPADs) are a promising solution for a wide range of point-of-care applications. The feasibility of inducing ion concentration polarization (ICP) on μPADs has thus far attracted little attention. Accordingly, this study commences by demonstrating the ICP phenomenon in a μPAD with a Nafion ion-selective membrane. We are the first to measure the current-voltage curve on a Nafion-coated μPAD in order to indicate that the ion depletion occurs and the ICP is triggered when the current reaches the limiting current. The ICP effect is then exploited to preconcentrate fluorescein on μPADs incorporating straight and convergent channels. By an optimal geometric design, it is shown that the convergent channel results in a greater preconcentration effect than the straight channel. Specifically, a 20-fold enhancement in the sample concentration is achieved after 130 s given an initial concentration of 10−5 M and an external potential of 50 V. By contrast, the straight channel yields only a 10-fold improvement in the concentration after 180 s. Further, the practical feasibility of the proposed convergent-channel μPAD is demonstrated using fluorescein isothiocyanate labeled bovine serum albumin. The experimental results show that a 15-fold enhancement of the initial sample concentration (10−5 M) is obtained after 120 s given an external potential of 50 V.
机译:基于微流体纸的分析设​​备(μPAD)是广泛的即时医疗应用的有前途的解决方案。迄今为止,在μPAD上诱导离子浓度极化(ICP)的可行性一直很少受到关注。因此,本研究通过证明带有Nafion离子选择膜的μPAD中的ICP现象开始。我们是第一个在Nafion涂层的μPAD上测量电流-电压曲线的方法,以表明当电流达到极限电流时会发生离子耗竭并触发ICP。然后利用ICP效应在结合了直通道和会聚通道的μPAD上预浓缩荧光素。通过最佳的几何设计,显示出会聚通道比直通道产生更大的预浓缩效果。具体而言,在初始浓度为10 -5 M和外部电位为50 V的情况下,在130 s后样品浓度可提高20倍。相比之下,直通道仅产生10倍。 180秒后浓度提高了两倍。此外,使用荧光素异硫氰酸酯标记的牛血清白蛋白证明了拟议的收敛通道μPAD的实际可行性。实验结果表明,在外部电势为50 V的情况下,经120 s后,初始样品浓度(10 -5 M)提高了15倍。

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