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首页> 外文期刊>ACS nano >A device for performing lateral conductance measurements on individual double-stranded DNA molecules
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A device for performing lateral conductance measurements on individual double-stranded DNA molecules

机译:用于对单个双链DNA分子进行横向电导测量的设备

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摘要

A nanofluidic device is described that is capable of electrically monitoring the driven translocation of DNA molecules through a nanochannel. This is achieved by intersecting a long transport channel with a shorter orthogonal nanochannel. The ionic conductance of this transverse nanochannel is monitored while DNA is electrokinetically driven through the transport channel. When DNA passes the intersection, the transverse conductance is altered, resulting in a transient current response. In 1 M KCl solutions, this was found to be a current enhancement of 5-25%, relative to the baseline transverse ionic current. Two different device geometries were investigated. In one device, the DNA was detected after it was fully inserted into and translocating through the transport nanochannel. In the other device, the DNA was detected while it was in the process of entering the nanochannel. It was found that these two conditions are characterized by different transport dynamics. Simultaneous optical and electrical monitoring of DNA translocation confirmed that the transient events originated from DNA transport through the nanochannel intersection.
机译:描述了一种纳米流体装置,其能够电监测DNA分子通过纳米通道的驱动的移位。这是通过将较长的传输通道与较短的正交纳米通道相交来实现的。在电动驱动DNA穿过转运通道的同时,监测该横向纳米通道的离子电导率。当DNA通过交叉点时,横向电导会改变,从而导致瞬态电流响应。在1 M KCl溶液中,相对于基线横向离子电流,电流增加了5-25%。研究了两种不同的设备几何形状。在一种设备中,将DNA完全插入转运纳米通道并通过转运纳米通道转运后,即可对其进行检测。在另一台设备中,DNA在进入纳米通道的过程中被检测到。发现这两个条件的特征在于不同的运输动力学。对DNA易位的同时光学和电学监测证实,瞬态事件起源于通过纳米通道相交处的DNA传输。

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