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Multiplexed Real-Time Polymerase Chain Reaction on a Digital Microfluidic Platform

机译:数字微流控平台上的多重实时聚合酶链反应

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This paper details the development of a digital microfluidic platform for multiplexed real-time polymerase chain reactions (PCR). Liquid samples in discrete droplet format are programmably manipulated upon an electrode array by the use of electrowetting. Rapid PCR thermocycling is performed in a closed-loop flow-through format where for each cycle the reaction droplets are cyclically transported between different temperature zones within an oil-filled cartridge. The cartridge is fabricated using low-cost printed-circuit-board technology and is intended to be a single-use disposable device. The PCR system exhibited remarkable amplification efficiency of 94.7percent. To test its potential application in infectious diseases, this novel PCR system reliably detected diagnostic DNA levels of methicillin-resistant Staphylococcus aureus (MRSA), Mycoplasma pneumoniae, and Candida albicans. Amplification of genomic DNA samples was consistently repeatable across multiple PCR loops both within and between cartridges. In addition, simultaneous real-time PCR amplification of both multiple different samples and multiple different targets on a single cartridge was demonstrated. A novel method of PCR speed optimization using variable cycle times has also been proposed and proven feasible. The versatile system includes magnetic bead handling capability, which was applied to the analysis of simulated clinical samples that were prepared from whole blood using a magnetic bead capture protocol. Other salient features of this versatile digital microfluidic PCR system are also discussed, including the configurability and scalability of microfluidic operations, instrument portability, and substrate-level integration with other pre- and post-PCR processes.
机译:本文详细介绍了用于多重实时聚合酶链反应(PCR)的数字微流控平台的开发。离散液滴形式的液体样品可通过电润湿在电极阵列上进行编程操作。快速PCR热循环以闭环流通形式进行,对于每个循环,反应液滴在注油盒内不同温度区域之间循环运输。该墨盒使用低成本的印刷电路板技术制造,旨在成为一次性使用的一次性设备。该PCR系统显示出显着的扩增效率,为94.7%。为了测试其在传染病中的潜在应用,这种新颖的PCR系统可靠地检测了耐甲氧西林的金黄色葡萄球菌(MRSA),肺炎支原体和白色念珠菌的诊断DNA水平。基因组DNA样品的扩增在盒内或盒内的多个PCR环​​之间可重复进行。此外,还展示了在单个试剂盒上同时对多个不同样品和多个不同靶标进行实时PCR扩增的情况。还提出了使用可变循环时间的PCR速度优化的新方法,并证明了该方法的可行性。该多功能系统具有磁珠处理功能,该功能已应用于使用磁珠捕获方案从全血中制备的模拟临床样品的分析。还讨论了这种多功能数字微流体PCR系统的其他显着特征,包括微流体操作的可配置性和可扩展性,仪器的便携性以及与其他PCR之前和之后的过程的底物级集成。

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