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Controlling the motion of DNA in a nanochannel with transversal alternating electric voltages

机译:使用横向交流电压控制纳米通道中DNA的运动

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A nanofluidic channel, with a pair of perpendicularly aligned nanoelectrodes, is proposed to electrically control the motion of DNA molecules. Using all-atom molecular dynamics simulations, we studied electrostatic responses of a charged DNA molecule in the nanochannel and investigated optimized operating conditions for controlling the DNA molecule. When the transversal electric field was periodically turned on and off, the DNA molecule was correspondingly immobilized on and released from the channel surface. Under simultaneously applied longitudinal biasing and transversal trapping electric fields, the DNA molecule moved forward in a ‘ratchet’-like fashion. It is expected that achieving the controlled motion of DNA in the channel can advance studies and applications of a nanochannel-based sensor for analyzing DNA (e.g., DNA sequencing).
机译:提出了具有一对垂直排列的纳米电极的纳米流体通道,以电控制DNA分子的运动。使用全原子分子动力学模拟,我们研究了带电DNA分子在纳米通道中的静电响应,并研究了控制DNA分子的最佳操作条件。当横向电场周期性地打开和关闭时,DNA分子相应地固定在通道表面上并从通道表面释放。在同时施加的纵向偏压和横向捕获电场的作用下,DNA分子以“棘轮”状的方式向前移动。期望实现通道中DNA的受控运动可以促进用于分析DNA(例如DNA测序)的基于纳米通道的传感器的研究和应用。

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