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Stochastic Sensing of Polynucleotides Using Patterned Nanopores

机译:使用图案化的纳米孔的多核苷酸的随机传感。

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The effect of the microscopic structure of a pore on polymer translocation is studied using Langevin dynamics simulation, and the consequence of introducing patterned stickiness inside the pore is investigated. It is found that the translocation process is extremely sensitive to the detailed structure of such patterns with faster than exponential dependence of translocation times on the stickiness of the pore. The stochastic nature of the translocation process leads to discernible differences between how polymers with different sequences go through specifically patterned pores. This notion is utilized to propose a stochastic sensing protocol for polynucleotides, and it is demonstrated that the method, which would be significantly faster than the existing methods, could be made arbitrarily robust.
机译:使用Langevin动力学模拟研究了孔的微观结构对聚合物移位的影响,并研究了在孔内引入图案化粘性的结果。已发现,易位过程对这种图案的详细结构极为敏感,其易位时间对孔的粘性的依赖性比指数快。易位过程的随机性导致具有不同序列的聚合物如何穿过特定图案的孔之间存在明显的差异。利用该概念提出了用于多核苷酸的随机感测协议,并且证明了可以比现有方法快得多的方法可以变得任意鲁棒。

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