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首页> 外文期刊>Analytical Sciences >A Practical Liquid Plug Flow-through Polymerase Chain-Reaction System Based on a Heat-Resistant Resin Chip
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A Practical Liquid Plug Flow-through Polymerase Chain-Reaction System Based on a Heat-Resistant Resin Chip

机译:基于耐热树脂芯片的实用液体塞流通聚合酶链反应系统

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摘要

Flow-through polymerase chain reaction (PCR) microfluidic systems for fast, small-volume DNA amplification on a single chip are significantly impacting medical and bioanalytical research. We have fabricated an improved, practical flow-through PCR chip by weighting a pressure-sensitive polyolefin (PSP) film onto a cyclo-olefin polymer (COP) substrate. The substrate was cut so as to produce microchannels, and was used to amplify DNA using a small moving liquid plug, in contrast to conventional continuous-flow-through PCR. Infrared (IR) imaging-based thermal analysis of the PSP film enabled the gradient and uniformity of the rapidly flowing microfluid to be accurately visualized, because the PSP film is thin, transparent and heat resistant. The liquid plug flow-through PCR, operating at 150 μl min~(?1), showed approximately 55% amplification compared to a commercial PCR instrument, and required only 250 s for 40 cycles. To our knowledge, this is the fastest cycling time reported to date. In a real test sample, the liquid plug flow-through PCR could detect the presence or absence of anthrax in a sample solution in approximately 250 s. Thus, this liquid plug flow-through PCR system, based on our novel PCR chip, excelled in a practical applications compared to other devices.
机译:流通聚合酶链反应(PCR)用于快速,小体积DNA扩增的微流体系统对单一芯片进行了显着影响医学和生物分析研究。通过将压敏聚烯烃(PSP)膜加权到环烯烃聚合物(COP)底物上,我们制造了一种改进的实际流通PCR芯片。切割基板以产生微通道,并使用小于常规的连续流通PCR,使用小型移动液体塞进行DNA扩增DNA。基于红外的(IR)成像的PSP膜的热分析使得快速流动的微流体的梯度和均匀性能够精确地可视化,因为PSP薄膜是薄的,透明和耐热的。与商业PCR仪器相比,在150μLmin〜(α1)下操作的液体塞流通PCR显示出约55%的扩增,并且需要仅需要250秒40次循环。为了我们的知识,这是迄今为止报告的最快的骑自行车时间。在真实的测试样品中,液体塞流通PCR可以在大约250s中检测样品溶液中炭疽的存在或不存在。因此,这种液体塞流经PCR系统,基于我们的新型PCR芯片,与其他装置相比,实际应用中表现出色。

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