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Analysis of PCR Kinetics inside a Microfluidic DNA Amplification System

机译:微流体DNA扩增系统中PCR动力学分析

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摘要

In order to analyze the DNA amplification numerically with integration of the DNA kinetics, three-dimensional simulations, including flow and thermal fields, and one-dimensional polymerase chain reaction (PCR) kinetics are presented. The simulated results are compared with experimental data that have been applied to the operation of a continuous-flow PCR device. Microchannels fabricated by Micro Electro-Mechanical Systems (MEMS) technologies are shown. Comprehensive simulations of the flow and thermal fields and experiments measuring temperatures during thermal cycling are presented first. The resultant velocity and temperature profiles from the simulations are introduced to the mathematical models of PCR kinetics. Then kinetic equations are utilized to determine the evolution of the species concentrations inside the DNA mixture along the microchannel. The exponential growth of the double-stranded DNA concentration is investigated numerically with the various operational parameters during PCR. Next a 190-bp segment of Bartonella DNA is amplified to evaluate the PCR performance. The trends of the experimental results and numerical data regarding the DNA amplification are similar. The unique architecture built in this study can be applied to a low-cost portable PCR system in the future.
机译:为了用DNA动力学的整合来分析DNA扩增,提出了三维模拟,包括流动和热场,以及一维聚合酶链反应(PCR)动力学。将模拟结果与已经应用于连续流PCR器件的操作的实验数据进行比较。显示了通过微机电系统(MEMS)技术制造的微通道。首先介绍了热循环期间的流动和热场的综合模拟和测量温度的温度。从模拟中引入了来自模拟的所得速度和温度分布到PCR动力学的数学模型。然后使用动力学方程来确定沿着微通道的DNA混合物内部浓度的演变。在PCR期间用各种操作参数进行数字地研究双链DNA浓度的指数增长。接下来,扩增190-BP段的Bartonella DNA以评估PCR性能。实验结果和关于DNA扩增的数值数据的趋势是相似的。本研究中建立的独特建筑可将来应用于低成本便携式PCR系统。

著录项

  • 作者

    Jyh Jian Chen; Kun Tze Li;

  • 作者单位
  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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