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Microfluidic gradient PCR (MG-PCR): a new method for microfluidic DNA amplification

机译:微流梯度PCR(MG-PCR):一种微流DNA扩增的新方法

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摘要

This study develops a new microfluidic DNA amplification strategy for executing parallel DNA amplification in the microfluidic gradient polymerase chain reaction (MG-PCR) device. The developed temperature gradient microfluidic system is generated by using an innovative fin design. The device mainly consists of modular thermally conductive copper flake which is attached onto a finned aluminum heat sink with a small fan. In our microfluidic temperature gradient prototype, a non-linear temperature gradient is produced along the gradient direction. On the copper flake of length 45 mm, width 40 mm and thickness 4 mm, the temperature gradient easily spans the range from 97 to 52℃. By making full use of the hot (90-97℃) and cold (60-70℃) regions on the temperature gradient device, the parallel, two-temperature MG-PCR amplification is feasible. As-a demonstration, the MG-PCR from three parallel reactions of 112-bp Escherichia coli DNA fragment is performed in a continuous-flow format, in which the flow of the PCR reagent in the closed loop is induced by the buoyancy-driven nature convection. Although the prototype is not optimized, the MG-PCR amplification can be completed in less than 45 min. However, the MG-PCR thermocycler presented herein can be further scaled-down, and thus the amplification times and reagent consumption can be further reduced. In addition, the currently developed temperature gradient technology can be applied onto other continuous-flow MG-PCR systems or used for other analytical purposes such as parallel and combination measurements, and fluorescent melting curve analysis.
机译:这项研究开发了一种新的微流体DNA扩增策略,用于在微流体梯度聚合酶链反应(MG-PCR)设备中执行并行DNA扩增。通过使用创新的散热片设计,可以开发出温度梯度微流体系统。该设备主要由模块化的导热铜片组成,该铜片通过小风扇固定在铝制散热片上。在我们的微流体温度梯度原型中,沿梯度方向会产生非线性温度梯度。在长45毫米,宽40毫米,厚4毫米的铜片上,温度梯度容易跨越97至52℃的范围。通过充分利用温度梯度仪上的热区(90-97℃)和冷区(60-70℃),平行,两温MG-PCR扩增是可行的。作为演示,来自112 bp大肠杆菌DNA片段的三个平行反应的MG-PCR以连续流形式进行,其中,由浮力驱动的性质诱导了PCR试剂在闭环中的流动对流。尽管原型尚未优化,但MG-PCR扩增可在不到45分钟的时间内完成。然而,本文提出的MG-PCR热循环仪可以进一步按比例缩小,因此可以进一步减少扩增时间和试剂消耗。此外,当前开发的温度梯度技术可以应用于其他连续流MG-PCR系统或用于其他分析目的,例如并行和组合测量以及荧光熔解曲线分析。

著录项

  • 来源
    《Biomedical Microdevices》 |2010年第1期|1-12|共12页
  • 作者

    Chunsun Zhang; Da Xing;

  • 作者单位

    MOE Key Laboratory of Laser Life Science & Institute of Laser Life Science, College of Biophotonics, South China Normal University, No.55, Zhongshan Avenue West, Tianhe District, Guangzhou 510631, People's Republic of China;

    MOE Key Laboratory of Laser Life Science & Institute of Laser Life Science, College of Biophotonics, South China Normal University, No.55, Zhongshan Avenue West, Tianhe District, Guangzhou 510631, People's Republic of China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    microfluidic gradient PCR (MG-PCR); microfluidic DNA amplification; continuous-flow; temperature gradient; nature convection;

    机译:微流梯度PCR(MG-PCR);微流DNA扩增;连续流温度梯度自然对流;

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