首页> 外文期刊>Turkish journal of chemistry >Influences of Electroosmotic Flows in Nanopillar Chips on DNA Separation: Experimental Results and Numerical Simulations
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Influences of Electroosmotic Flows in Nanopillar Chips on DNA Separation: Experimental Results and Numerical Simulations

机译:纳米柱芯片中的电渗流对DNA分离的影响:实验结果和数值模拟

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摘要

The various potential factors affecting the performance of nanopillar chips on DNA separation were investigated from the viewpoints of both numerical calculations and actual experiments. To yield higher performance and replace the conventional DNA separation techniques such as microchip electrophoresis, the phenomenon specific to the nanopillar chips should be deeply understood. In this paper, although various factors affecting the performance of the nanopillar chips are considered, we focused on the effect of electroosmotic flow, which is particularly noticeable in quartz-made nanopillar chips. High-resolution separation of DNA was realized when an electroosmotic flow was suppressed by simply using a higher concentration of buffer, but DNA separation failed in the presence of an electroosmotic flow. It was confirmed from the numerical simulations and the direct observations that the deformation of DNA band during the injection process was induced by electroosmotic flow and consequently led to a poor resolution.
机译:从数值计算和实际实验的角度研究了影响纳米柱芯片在DNA分离性能的各种潜在因素。为了获得更高的性能并取代传统的DNA分离技术(例如微芯片电泳),应深刻理解纳米柱芯片特有的现象。在本文中,尽管考虑了影响纳米柱状芯片性能的各种因素,但我们重点研究了电渗流的影响,这在石英制纳米柱状芯片中尤为明显。当通过简单地使用较高浓度的缓冲液抑制电渗流时,可以实现DNA的高分辨率分离,但是在电渗流的存在下DNA分离失败。通过数值模拟和直接观察证实,注射过程中DNA条带的变形是由电渗流引起的,因此导致较差的分辨率。

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