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Design and fabrication of portable continuous flow PCR microfluidic chip for DNA replication

机译:用于DNA复制的便携式连续流PCR微流控芯片的设计与制造

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摘要

The reasons for restricting continuous flow polymerase chain reaction (CF-PCR) microfluidic chip from lab to application are that it is not portable and requires costly external precision pumps for sample injection. Herein, we employed water as the substitute for PCR solution, and investigated the effect of the cross-section, width-to-depth ratio, and the length ratio for three temperature zones of the micro channel on the thermal and flow distribution of fluid in micro tube by finite element analysis. Results show that the central velocity is uniform and stable velocity occupies the most if the cross-section is rectangular. The deviation between predefined temperature and theoretical temperature is slight and the fluid flux is the most if width-to-depth ratio is 1:1. It is suitable for the short DNA replication if the high temperature zone W_h is larger than the low temperature zone W_l, and vice versa. Then a portable CF-PCR microfluidic chip was fabricated and an automatic sample injection system was developed. As an application, we have successfully amplified the DNA of Treponema denticola in the chip within 8 min. Such a study may offer new insight into the design of CF-PCR microfluidic chip and promote it from lab-scale research to full-scale application.
机译:从实验室到应用程序限制连续流动聚合酶链反应(CF-PCR)微流控芯片的原因是,它不便携,并且需要昂贵的外部精密泵来进样。在本文中,我们以水代替PCR溶液,并研究了微通道的三个温度区的横截面,宽深比和长宽比对流体中热流分布的影响。微管的有限元分析。结果表明,如果横截面为矩形,则中心速度是均匀的,并且稳定速度占据最大的位置。如果宽深比为1:1,则预定义温度与理论温度之间的偏差很小,流体通量最大。如果高温区W_h大于低温区W_1,则适用于短DNA复制,反之亦然。然后制作了便携式CF-PCR微流控芯片,并开发了自动进样系统。作为一种应用,我们已成功在8分钟内在芯片中扩增了密螺旋体的DNA。这样的研究可以为CF-PCR微流体芯片的设计提供新的见识,并将其从实验室规模的研究推广到全面的应用。

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