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Sub-7-second genotyping of single-nucleotide polymorphism by high-resolution melting curve analysis on a thermal digital microfluidic device

机译:通过热数字微流控设备的高分辨率熔解曲线分析,对亚核苷酸多态性进行不到7秒的基因分型

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摘要

We developed a thermal digital microfluidic (T-DMF) device enabling ultrafast DNA melting curve analysis (MCA). Within 7 seconds, the T-DMF device succeeded in differentiating a melting point difference down to 1.6 degrees C with a variation of 0.3 degrees C in a tiny droplet sample (1.2 mu L), which was 300 times faster and with 20 times less sample spending than the standard MCA (35 minutes, 25 mu L) run in a commercial qPCR machine. Such a performance makes it possible for a rapid discrimination of single-nucleotide mutation relevant to prompt clinical decision-making. Also, aided by electronic intelligent control, the T-DMF device facilitates sample handling and pipelining in an automatic serial manner. An optimized oval-shaped thermal electrode is introduced to achieve high thermal uniformity. A device-sealing technique averts sample contamination and permits uninterrupted chemical/biological reactions. Simple fabrication using a single chromium layer fulfills both the thermal and typical transport electrode requirements. Capable of thermally modulating DNA samples with ultrafast MCA, this T-DMF device has the potential for a wide variety of life science analyses, especially for disease diagnosis and prognosis.
机译:我们开发了一种热数字微流体(T-DMF)设备,可进行超快速DNA熔解曲线分析(MCA)。在7秒内,T-DMF设备成功将微滴样品(1.2μL)中的熔点差降低至1.6摄氏度,变化幅度为0.3摄氏度,速度提高了300倍,样品减少了20倍费用要比在商用qPCR机上运行的标准MCA(35分钟,25μL)高。这样的性能使得有可能快速鉴别与迅速的临床决策有关的单核苷酸突变。此外,在电子智能控制的帮助下,T-DMF设备以自动串行方式简化了样品处理和流水线操作。引入优化的椭圆形热电极以实现高热均匀性。设备密封技术避免了样品污染,并允许不间断的化学/生物反应。使用单个铬层的简单制造既可以满足热传输电极的要求,也可以满足典型的传输电极的要求。这种T-DMF设备能够用超快MCA热调节DNA样品,具有进行多种生命科学分析的潜力,尤其是在疾病诊断和预后方面。

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