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Multichannel oscillatory-flow PCR micro-fluidic chip with controllable temperature gradient

机译:可控温度梯度的多通道振荡流PCR微流控芯片

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摘要

This study presents a multichannel oscillatory-flow micro-fluidic chip for high-throughput polymerase chain reaction (PCR). The micro-fluidic chip consists of microheaters and temperature sensors integrated on silicon substrates and parallel microchannels fabricated with glass/PDMS laminates. In order to achieve multiplex thermal protocols simultaneously, the micro-fluidic chip combines uniform resistors and gradually changed resistors on the heater chips. By regulating the heating power of the gradually changed resistors, a controllable temperature gradient was obtained on the micro-fluidic chip for same/different annealing temperature. Then the temperature gradient was investigated in the experiment. The results showed that the temperature difference could change from 0 to 20 A degrees C in the range of about 50-70 A degrees C with low power consumption. Finally, the performance of the developed micro-fluidic chip was successfully demonstrated by amplifying a detection gene associated with hepatitis B virus (HBV) at same and different annealing temperature, respectively. The developed micro-fluidic chip may provide a useful platform for high-throughput PCR amplification.
机译:这项研究提出了一种用于高通量聚合酶链反应(PCR)的多通道振荡流微流控芯片。微流控芯片由集成在硅基板上的微型加热器和温度传感器以及由玻璃/ PDMS层压板制成的平行微通道组成。为了同时实现多重热协议,微流体芯片在加热器芯片上结合了均匀的电阻和逐渐变化的电阻。通过调节逐渐变化的电阻器的加热功率,在相同/不同退火温度的微流体芯片上获得了可控制的温度梯度。然后在实验中研究温度梯度。结果表明,在低功耗的情况下,温度差可以在0至20 A摄氏度之间变化,范围约为50-70 A摄氏度。最后,通过分别在相同和不同的退火温度下扩增与乙型肝炎病毒(HBV)相关的检测基因,成功地证明了开发的微流控芯片的性能。开发的微流控芯片可以为高通量PCR扩增提供有用的平台。

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