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Multiplex, Quantitative, Reverse Transcription PCR Detection of Influenza Viruses Using Droplet Microfluidic Technology

机译:使用液滴微流技术的多重,定量,逆转录PCR检测流感病毒

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Quantitative, reverse transcription, polymerase chain reaction (qRT-PCR) is facilitated by leveraging droplet microfluidic (DMF) system, which due to its precision dispensing and sample handling capabilities at microliter and lower volumes has emerged as a popular method for miniaturization of the PCR platform. This work substantially improves and extends the functional capabilities of our previously demonstrated single qRT-PCR micro-chip, which utilized a combination of electrostatic and electrowetting droplet actuation. In the reported work we illustrate a spatially multiplexed micro-device that is capable of conducting up to eight parallel, real-time PCR reactions per usage, with adjustable control on the PCR thermal cycling parameters (both process time and temperature set-points). This micro-device has been utilized to detect and quantify the presence of two clinically relevant respiratory viruses, Influenza A and Influenza B, in human samples (nasopharyngeal swabs, throat swabs). The device performed accurate detection and quantification of the two respiratory viruses, over several orders of RNA copy counts, in unknown (blind) panels of extracted patient samples with acceptably high PCR efficiency (94%). The multi-stage qRT-PCR assays on eight panel patient samples were accomplished within 35–40 min, with a detection limit for the target Influenza virus RNAs estimated to be less than 10 RNA copies per reaction.
机译:利用微滴微流体(DMF)系统可促进定量逆转录聚合酶链反应(qRT-PCR),由于其精确的分配和微升和小体积样品处理能力,已成为PCR微型化的一种流行方法平台。这项工作大大改善并扩展了我们先前展示的单qRT-PCR微芯片的功能,该芯片利用了静电和电润湿液滴驱动的组合。在报告的工作中,我们说明了一种空间多路复用的微型设备,该设备每次使用最多可以进行八个并行的实时PCR反应,并且可以对PCR热循环参数(处理时间和温度设定点)进行可调控制。该微型设备已被用于检测和量化人类样品(鼻咽拭子,咽喉拭子)中两种临床相关的呼吸道病毒(甲型流感和乙型流感)的存在。该设备在提取的患者样品的未知(盲目)面板中,以几个数量级的RNA复制计数对两种呼吸道病毒进行了准确的检测和定量,PCR效率很高(> 94%)。在35至40分钟内完成了对八个样本患者样品的多阶段qRT-PCR分析,目标流感病毒RNA的检出限估计为每个反应少于10个RNA拷贝。

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