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首页> 外文期刊>Journal of nanoscience and nanotechnology >Electrodynamics of DNA Molecules Moving Through Microfluidic Channels Studied with Single Molecular Fluorescence Imaging Technology
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Electrodynamics of DNA Molecules Moving Through Microfluidic Channels Studied with Single Molecular Fluorescence Imaging Technology

机译:用单分子荧光成像技术研究通过微流体通道移动的DNA分子的电动力学。

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Flow dynamic features of single DNA molecules moving within microano-channels have become significant for they can be widely used in stretching, separation and development of high-speed DNA molecules sequencing technology. In this study, the electrodynamics' properties of lambda-DNA molecules which were transferred through microfluidic channels and driven by electric field force, were studied using single molecule fluorescence imaging technology. Results indicated that the velocity of DNA molecules moving within the microfluidic channels was critically dependent on the value of applied electric field, and their direction was commonly opposite to the direction of electric field. A particularly intriguing phenomenon was that the direction of DNA molecules moving within the 30 mu m channels was reversed at a threshold voltage, i.e., E-0 = 7 x 10(3) V/m, which was induced by competition between the electrophoresis effects and elecroosmosis. The microfluidic mechanisms were finally discussed.
机译:在微/纳米通道中移动的单个DNA分子的流动动力学特性变得很重要,因为它们可以广泛用于高速DNA分子测序技术的拉伸,分离和开发。在这项研究中,使用单分子荧光成像技术研究了通过微流体通道转移并受到电场力驱动的λ-DNA分子的电动力学性质。结果表明,DNA分子在微流体通道内移动的速度主要取决于施加的电场值,其方向通常与电场方向相反。一个特别有趣的现象是,在30微米通道内移动的DNA分子的方向在阈值电压(即E-0 = 7 x 10(3)V / m)下发生了反转,这是由电泳效应之间的竞争引起的和电渗。最后讨论了微流控机制。

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