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首页> 外文期刊>Journal of Micromechanics and Microengineering >Biased reptation model with electroosmosis for DNA electrophoresis in microchannels with a sub-micron pillar array
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Biased reptation model with electroosmosis for DNA electrophoresis in microchannels with a sub-micron pillar array

机译:带有亚电柱阵列的微通道中DNA电泳的电渗偏倚复制模型

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摘要

A novel biased reptation model with electroosmosis (BRE) is proposed for a long-chain DNA electrophoresis separation mechanism in microchannels with a sub-micron pillar array. The BRE model incorporates effective electroosmosis into the classical biased reptation model (BRM). Initial investigation of the BRM with additional electroosmosis flow was conducted. In order to validate the proposed BRE model, the apparent electrophoretic mobilities of different sizes of long-chain DNA, T4 DNA and lambda DNA at different electric fields were measured in a microfabricated electrophoresis chip with an embedded sub-micron pillar array. The current-monitoring method was used to measure the electroosmotic mobility in the microfabricated electrophoresis chip. The proposed BRE model shows much better agreement with the experimental results compared to the classical BRM and the semi-empirical results based on the biased reptation with fluctuation (BRF). The average standard error between our proposed BRE model and experimental data is 8.13% without any fitting parameters, while the errors are 343.01% for the BRM and 17.54% for the BRF with one fitting parameter, respectively.
机译:针对具有亚微米柱阵列的微通道中的长链DNA电泳分离机理,提出了一种新型的带电渗的偏倚复制模型(BRE)。 BRE模型将有效的电渗疗法纳入了经典的偏倚复制模型(BRM)。对具有额外电渗流的BRM进行了初步研究。为了验证提出的BRE模型,在具有嵌入式亚微米柱阵列的微型电泳芯片中测量了不同大小的长链DNA,T4 DNA和λDNA在不同电场下的表观电泳迁移率。电流监测方法用于测量微细电泳芯片中的电渗迁移率。与经典的BRM相比,所提出的BRE模型与实验结果具有更好的一致性,并且基于带偏差的偏序复制(BRF)的半经验结果也更好。在没有任何拟合参数的情况下,我们提出的BRE模型与实验数据之间的平均标准误差为8.13%,而对于具有一个拟合参数的BRM,BRF的平均标准误差为17.03%。

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