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在纸基流体通道上同时进行阴离子和阳离子物种的电动堆积与分离。

Simultaneous electrokinetic stacking and separation of anionic and cationic species on a paper fluidic channel.

作者信息

Liu Lei, Xie Mao-Rong, Chen Yu-Zhu, Wu Zhi-Yong

机构信息

Research Center for Analytical Sciences, College of Sciences, Northeastern University, Shenyang 110819, P. R. China.

出版信息

Lab Chip. 2019 Feb 26;19(5):845-850. doi: 10.1039/c8lc01320a.

Abstract

On-line enrichment is effective for improving the sensitivity of paper-based analytical devices (PADs). Electrokinetic stacking of ionic species - anionic or cationic species, respectively, on a paper-based fluidic channel has been well demonstrated in the literature. In this work, we further demonstrated that both anionic and cationic species can be electrokinetically stacked and separated simultaneously on the same paper fluidic channel. The feasibility of the proposed method was visually demonstrated by using a colored cationic probe of Rhodamine 6G and an anionic probe of Brilliant Blue. With the introduction of a background electrolyte (BGE) consisting of weak acid and weak base salt, two electric field gradients can be developed on the same paper fluidic channel when a DC voltage was applied. Both of the anionic and cationic species from the reservoirs can be simultaneously stacked as separate bands on the two field gradients, respectively. Under optimized conditions, two orders of magnitude enrichment factors can be achieved for the anionic and cationic probes as characterized by colorimetric analysis by smartphone imaging. The applicability of this method was further demonstrated by stacking and separation of copper ions/nitrite and even amphoteric ions-proteins of phycocyanin (blue, pI 4.4)/cytochrome C (brown, pI 10.2). Potential applications can be found not only for a PAD based point of care test (POCT), but also for sample pretreatment in protein analysis considering the friendliness of the BGE to the mass spectrometer.

摘要

在线富集对于提高纸质分析装置(PADs)的灵敏度是有效的。离子物种(分别为阴离子或阳离子物种)在基于纸的流体通道上的电动堆积已在文献中得到充分证明。在这项工作中,我们进一步证明了阴离子和阳离子物种可以在同一纸流体通道上同时进行电动堆积和分离。通过使用罗丹明6G的有色阳离子探针和亮蓝的阴离子探针,直观地证明了所提出方法的可行性。通过引入由弱酸和弱碱盐组成的背景电解质(BGE),当施加直流电压时,可以在同一纸流体通道上形成两个电场梯度。来自储液器的阴离子和阳离子物种都可以分别作为单独的条带同时堆积在两个场梯度上。在优化条件下,通过智能手机成像比色分析表征,阴离子和阳离子探针可实现两个数量级的富集因子。通过对铜离子/亚硝酸盐甚至两性离子——藻蓝蛋白(蓝色,pI 4.4)/细胞色素C(棕色,pI 10.2)的堆积和分离,进一步证明了该方法的适用性。该方法不仅可用于基于PAD的即时检测(POCT),考虑到BGE对质谱仪的友好性,还可用于蛋白质分析中的样品预处理,具有潜在的应用价值。

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