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Real-time PCR in microfluidic devices

机译:微流控设备中的实时PCR

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A central method in a standard biochemical laboratory is represented by the polymerase chain reaction (PCR), therefore many attempts have been performed so far to implement this technique in lab-on-a-chip (LOC) devices. PCR is an ideal candidate for miniaturization because of a reduction of assay time and decreased costs for expensive bio-chemicals. In case of the "classical" PCR, detection is done by identification of DNA fragments electrophoretically separated in agarose gels. This method is meanwhile frequently replaced by the so-called Real-Time-PCR because here the exponential increase of amplificates can be observed directly by measurement of DNA interacting fluorescent dyes. Two main methods for on-chip PCRs are available: traditional "batch" PCR in chambers on a chip using thermal cycling, requiring about 30 minutes for a typical PCR protocol and continuous-flow PCR, where the liquid is guided over stationary temperature zones. In the latter case, the PCR protocol can be as fast as 5 minutes. In the presented work, a proof of concept is demonstrated for a real-time-detection of PCR products in microfluidic systems.
机译:标准生化实验室中的中央方法由聚合酶链反应(PCR)表示,因此迄今为止已经进行了许多尝试,以在芯片上(LOC)器件中实现该技术。 PCR是小型化的理想候选者,因为减少测定时间并降低了昂贵的生物化学品的成本。在“经典”PCR的情况下,通过鉴定在琼脂糖凝胶中电泳分离的DNA片段进行检测。该方法同时经常被所谓的实时PCR替换,因为这里可以通过测量DNA相互作用荧光染料直接观察扩增的指数增加。可提供两种用于片上PCR的主要方法:使用热循环的芯片上的腔室中的传统“批次”PCR,需要约30分钟的典型PCR方案和连续流动PCR,其中液体被引导在固定温度区域上。在后一种情况下,PCR方案可以像5分钟一样快。在本工作中,证明概念证明是用于微流体系统中的PCR产物的实时检测。

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