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Investigating the translocation of λ-DNA molecules through PDMS nanopores

机译:研究λ-DNA分子通过PDMS纳米孔的转运

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摘要

We investigate the translocation of λ-DNA molecules through resistive-pulse polydimethylsiloxane (PDMS) nanopore sensors. Single molecules of λ-DNA were detected as a transient current increase due to the effect of DNA charge on ionic current through the pore. DNA translocation was found to deviate from a Poisson process when the interval between translocations was comparable to the duration of translocation events, suggesting that translocation was impeded during the presence of another translocating molecule in the nanopore. Characterization of translocation at different voltage biases revealed that a critical voltage was necessary to drive DNA molecules through the nanopore. Above this critical voltage, frequency of translocation events was directly proportional to DNA concentration and voltage bias, suggesting that transport of DNA from the solution to the nanopore was the rate limiting step. These observations are consistent with experimental results on transport of DNA through nanopores and nanoslits and the theory of hydrodynamically driven polymer flow in pores.
机译:我们调查通过电阻脉冲聚二甲基硅氧烷(PDMS)纳米孔传感器的λDNA分子的易位。由于DNA电荷对通过孔的离子电流的影响,检测到λ-DNA的单分子是瞬时电流增加。当易位之间的间隔与易位事件的持续时间相当时,发现DNA易位偏离泊松过程,这表明在纳米孔中存在另一个易位分子时,易位受到阻碍。在不同电压偏置下的易位特征表明,驱动DNA分子穿过纳米孔所必需的临界电压。高于此临界电压,易位事件的频率与DNA浓度和电压偏差成正比,表明DNA从溶液到纳米孔的转运是限速步骤。这些观察结果与通过纳米孔和纳米缝隙传输DNA的实验结果以及孔中流体动力学驱动的聚合物流动理论相一致。

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