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Spinning Disk Platform for Microfluidic Digital Polymerase Chain Reaction

机译:微流数字聚合酶链反应的旋转磁盘平台。

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An inexpensive plastic disk disposable was designed for digital polymerase chain reaction (PCR) applications with a microfluidic architecture that passively compartmentalizes a sample into 1000 nanoliter-sized wells by centrifugation. Well volumes of 33 nL were attained with a 16percent volume coefficient of variation (CV). A rapid air thermocycler with aggregate real-time fluorescence detection was used, achieving PCR cycle times of 33 s and 94percent PCR efficiency, with a melting curve to validate product specificity. A CCD camera acquired a fluorescent image of the disk following PCR, and the well intensity frequency distribution and Poisson distribution statistics were used to count the positive wells on the disk to determine the number of template molecules amplified. A 300 bp plasmid DNA product was amplified within the disk and analyzed in 50 min with 58-1000 wells containing plasmid template. Target concentrations measured by the spinning disk platform were 3 times less than that predicted by absorbance measurements. The spinning disk platform reduces disposable cost, instrument complexity, and thermocycling time compared to other current digital PCR platforms.
机译:一种廉价的一次性塑料盘设计用于微聚合结构,用于数字聚合酶链反应(PCR)应用,该结构通过离心将样品被动分为1000纳升大小的孔。孔体积为33 nL,体积变异系数(CV)为16%。使用了具有集合实时荧光检测功能的快速空气热循环仪,PCR循环时间为33 s,PCR效率为94%,并具有熔解曲线以验证产物的特异性。 CCD相机在PCR之后获取圆盘的荧光图像,并使用孔强度频率分布和泊松分布统计数据对圆盘上的阳性孔进行计数,以确定扩增的模板分子的数量。在圆盘内扩增300 bp质粒DNA产物,并在50分钟内用包含质粒模板的58-1000个孔进行分析。通过旋转盘平台测量的目标浓度比通过吸光度测量预测的目标浓度低3倍。与其他当前的数字PCR平台相比,旋转磁盘平台减少了一次性成本,仪器复杂度和热循环时间。

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