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High-Throughput Polymerase Chain Reaction in Parallel Circular Loops Using Magnetic Actuation

机译:使用磁驱动的平行环中的高通量聚合酶链反应

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摘要

We report here a novel multichannel closed-loop magnetically actuated microchip for high-throughput polymerase chain reaction (PCR). This is achieved by designing a series of concentric circular channels on one microchip and exploiting a magnetic force to drive DNA samples flowing continuously through the closed loops. The magnetic force arises from an external permanent magnet through ferrofluid plugs inside the microchannels. The magnet enables simultaneous actuation of DNA samples in all the channels. As the samples go around the loops, they pass through three preset temperature zones. Parameters of PCR, such as incubation time, temperatures, and number of cycles, can be fully controlled and adjusted. High reproducibility was achieved for different channels in the same run and for the same channels in consecutive runs. Genetically modified organisms (GMOs) were amplified simultaneously using the developed device. This simple, reliable, and high-throughput PCR microchip would find wide applications in forensic, clinical, and biological fields.
机译:我们在这里报告了一种用于高通量聚合酶链反应(PCR)的新型多通道闭环磁驱动微芯片。这是通过在一个微芯片上设计一系列同心圆形通道并利用磁力来驱动DNA样本连续流过闭合环来实现的。磁力由外部永久磁铁通过微通道内部的铁磁塞产生。磁铁可以同时激活所有通道中的DNA样品。当样品绕过环路时,它们会穿过三个预设温度区域。可以完全控制和调整PCR参数,例如孵育时间,温度和循环数。对于同一运行中的不同通道以及连续运行中的相同通道,实现了高重现性。使用开发的设备同时扩增了转基因生物(GMO)。这种简单,可靠且高通量的PCR微芯片将在法医,临床和生物学领域中找到广泛的应用。

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