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A Novel Contamination Free Two Temperature Continuous Flow Polymerase Chain Reactor

机译:一种新型污染两种温度连续流动聚合酶链反应器

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Polymerase Chain Reaction (PCR) is an enzymatic process that has dramatically advanced many fields of life sciences, where it is an indispensable tool in a burgeoning range of applications, including diagnostic medicine, molecular biology, forensics and food testing. Recent increased demand for extremely high throughput PCR systems has led to the development of miniaturised continuous flow microfluidic PCR devices, which may have extremely high throughput compared to standard commercial PCR thermal cyclers. A novel continuous flow microfluidic PCR device has been designed and fabricated, consisting of two thermal zones maintained on aluminium thermal blocks providing the precise temperatures required for denaturation and annealing/extension. Polycarbonate sideplates retain the denaturation thermal block vertically above the annealing/extension thermal block while allowing for a variable air gap to be maintained between them. Heating of the denaturation thermal block is achieved using a Labview controlled Thermofoil heater, while the annealing/extension thermal block is maintained at temperature by optimised heat transfer from the denaturation block. Flow-through capillary tubing is positioned into a grooved serpentine channel machined into these thermal blocks. This serpentine channel passes through each thermal block fifty times, providing fifty PCR thermal cycles. Contamination free high throughput continuous flow PCR necessitates that the samples be encapsulated in an immiscible carrier fluid to eradicate cross contamination between samples and suppress the likelihood of the sample contacting the capillary leading to sample degradation. Encapsulation of the PCR reaction mixture is achieved upstream of the thermal cycler through segmentation of the sample into droplets entrained within an immiscible carrier fluid, which are then cycled through the thermal cycler. High throughput DNA amplification of two genes, GAPDH and LEF1, from the REH cell line has been successfully demonstrated on this microfluidic platform without any detectable contamination between samples. The PCR droplet reactors were approximately 250nl which is two orders of magnitude less than the standard sample size for most commercial PCR thermal cyclers.
机译:聚合酶链式反应(PCR)是一种酶促过程,它已大大提高了许多生命科学领域,其中在新兴应用范围内是一种不可或缺的工具,包括诊断医学,分子生物学,取证和食物检测。最近对极高产量PCR系统的需求增加导致小型化连续流体微流体PCR器件的发展,与标准商业PCR热循环仪相比,这可能具有极高的吞吐量。设计和制造了一种新型连续流动微流体PCR器件,由两个在铝热块上维护的热带,提供了变性和退火/延伸所需的精确温度。聚碳酸酯面料板垂直地在退火/延伸热块上方保持变性热块,同时允许在它们之间保持可变气隙。使用LabVIEW控制的热原加热器实现变性热块的加热,而退火/延伸热块通过优化从变性块的优化传热保持温度。流通毛细管管定位成带入这些热块的槽蛇形通道中。该蛇形通道通过每个热块50次,提供五十PCR热循环。污染自由高通量连续流动PCR需要将样品包封在不混溶的载体流体中,以在样品之间消除交叉污染,并抑制样品接触毛细管的可能性导致样品降解。通过将样品的分割在热循环仪的上游终止于夹带在不混溶的载体流体中的液滴的上游,然后通过热循环液循环。在该微流体平台上成功地证明了来自REH细胞系的两种基因,GAPDH和lef1的高通量DNA扩增,在该微流体平台上成功地证明了样品之间的任何可检测的污染。 PCR液滴反应器约为250NL,这比大多数商业PCR热循环仪的标准样品大小为250nL。

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