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Protein Preconcentration Using Nanofractures Generated by Nanoparticle-Assisted Electric Breakdown at Junction Gaps

机译:使用纳米缝隙处的纳米粒子辅助电击穿产生的纳米裂缝进行蛋白质预浓缩

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摘要

Sample preconcentration is an important step that increases the accuracy of subsequent detection, especially for samples with extremely low concentrations. Due to the overlapping of electrical double layers in the nanofluidic channel, the concentration polarization effect can be generated by applying an electric field. Therefore, a nonlinear electrokinetic flow is induced, which results in the fast accumulation of proteins in front of the induced ionic depletion zone, the so-called exclusion-enrichment effect. Nanofractures were created in this work to preconcentrate proteins via the exclusion-enrichment effect. The protein sample was driven by electroosmotic flow and accumulated at a specific location. The preconcentration chip for proteins was fabricated using simple standard soft lithography with a polydimethylsiloxane replica. Nanofractures were formed by utilizing nanoparticle-assisted electric breakdown. The proposed method for nanofracture formation that utilizes nanoparticle deposition at the junction gap between microchannels greatly decreases the required electric breakdown voltage. The experimental results indicate that a protein sample with an extremely low concentration of 1 nM was concentrated to 1.5×104-fold in 60 min using the proposed chip.
机译:样品预浓缩是提高后续检测准确性的重要步骤,特别是对于浓度极低的样品。由于纳米流体通道中双电层的重叠,可以通过施加电场来产生浓差极化效应。因此,诱导了非线性的电动流,这导致蛋白质在诱导的离子消耗区的前面快速积累,即所谓的排他富集效应。在这项工作中创建了纳米裂缝,以通过排他富集效应预浓缩蛋白质。蛋白质样品由电渗流驱动并积累在特定位置。用于蛋白质的预浓缩芯片是使用具有聚二甲基硅氧烷复制品的简单标准软光刻技术制造的。通过利用纳米粒子辅助的电击穿形成纳米断裂。所提出的利用纳米颗粒在微通道之间的接合间隙处沉积的纳米断裂形成方法大大降低了所需的击穿电压。实验结果表明,使用所提出的芯片,可以在60分钟内将1nM极低浓度的蛋白质样品浓缩至1.5×10 4 倍。

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