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A rapid microfluidic platform with real-time fluorescence detection system for molecular diagnosis

机译:具有实时荧光检测系统的快速微流体平台,用于分子诊断

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摘要

The development of microfluidics-based quantitative real-time polymerase chain reaction for molecular diagnosis is becoming a burgeoning field of research. Here, we present a compact microfluidic real-time PCR platform integrated with a thermal cycler and an online fluorescence detection module, including a disposable microfluidic chip fabricated in polydimethylsiloxane. The fluorescence detection module is able to continuously monitor the PCR reaction in the microfluidic chip over thermal cycles, and a large amount of signal data can be rapidly analysed by a built-in computer. In order to further evaluate the performance of the developed PCR platform, we carried out a series of systemic verifications, such as precision of temperature control, sensitivity and specificity. Under the optimal conditions, the limit of detection of the target molecule reached approximately 1.0 × 102 copies/µL, with a correlation coefficient of 0.9966. In addition, hepatitis B virus could be detected quickly by this real-time PCR system in about half an hour. Furthermore, the faint target fluorescence signal emitted from the digital microfluidic chip, which contains thousands of micro-reaction chambers with a volume of 100 pL, could be easily detected on this microfluidic platform. Overall, the results indicated that the developed microfluidic PCR platform can be used for sensitive and specific detection in molecular diagnosis. More importantly, owing to adopting the pattern of modularization design, this platform is considerably compact and portable. If necessary, special custom-made chips could be cooperated with this portable platform to satisfy the needs of various molecular detection tests.
机译:基于微流体的定量实时聚合酶链反应的分子诊断的发展正在成为一种新的研究领域。在这里,我们介绍了一间与热循环仪和在线荧光检测模块集成的紧凑型微流体实时PCR平台,包括在聚二甲基硅氧烷中制造的一次性微流体芯片。荧光检测模块能够通过热循环连续地监测微流体芯片中的PCR反应,并且可以通过内置计算机迅速分析大量的信号数据。为了进一步评估发达的PCR平台的性能,我们进行了一系列系统性验证,例如温度控制,灵敏度和特异性的精度。在最佳条件下,靶分子的检测极限达到约1.0×102拷贝/μl,相关系数为0.9966。此外,乙型肝炎病毒可以在大约半小时内通过该实时PCR系统快速检测到。此外,在该微流体平台上可以容易地检测到从数字微流体芯片发射的微流体芯片发射的微弱目标荧光信号,该微流体芯片包含成千上万的微量反应室,在该微流体平台上可以容易地检测到体积为100pL。总的来说,结果表明,发育的微流体PCR平台可用于分子诊断中的敏感和特异性检测。更重要的是,由于采用模块化设计的模式,该平台具有相当紧凑和便携的。如有必要,可以使用该便携式平台进行特殊的定制芯片以满足各种分子检测测试的需求。

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