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Centrifugal Microfluidic System for Nucleic Acid Amplification and Detection

机译:离心微流控系统用于核酸扩增和检测

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We report here the development of a rapid PCR microfluidic system comprising a double-shaft turntable and centrifugal-based disc that rapidly drives the PCR mixture between chambers set at different temperatures, and the bidirectional flow improved the space utilization of the disc. Three heating resistors and thermistors maintained uniform, specific temperatures for the denaturation, annealing, and extension steps of the PCR. Infrared imaging showed that there was little thermal interference between reaction chambers; the system enabled the cycle number and reaction time of each step to be independently adjusted. To validate the function and efficiency of the centrifugal microfluidic system, a 350-base pair target gene from the hepatitis B virus was amplified and quantitated by fluorescence detection. By optimizing the cycling parameters, the reaction time was reduced to 32 min as compared to 120 min for a commercial PCR machine. DNA samples with concentrations ranging from 10 to 106 copies/mL could be quantitatively analyzed using this system. This centrifugal-based microfluidic platform is a useful system and possesses industrialization potential that can be used for portable diagnostics.
机译:我们在这里报告了快速PCR微流控系统的开发,该系统包括双轴转盘和基于离心的圆盘,可快速驱动设置在不同温度下的腔室之间的PCR混合物,并且双向流动提高了圆盘的空间利用率。三个加热电阻和热敏电阻为PCR的变性,退火和延伸步骤维持了统一的特定温度。红外成像表明,反应室之间几乎没有热干扰。系统使每个步骤的循环数和反应时间可以独立调整。为了验证离心微流控系统的功能和效率,对来自乙型肝炎病毒的350个碱基对的靶基因进行了扩增,并通过荧光检测进行了定量。通过优化循环参数,与商用PCR仪的120分钟相比,反应时间减少到32分钟。使用该系统可以定量分析浓度范围为10到10 6 拷贝/ mL的DNA样品。这种基于离心的微流体平台是一种有用的系统,具有可用于便携式诊断的工业化潜力。

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