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首页> 外文期刊>Lab on a chip >A handheld flow genetic analysis system (FGAS): towards rapid, sensitive, quantitative and multiplex molecular diagnosis at the point-of-care level
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A handheld flow genetic analysis system (FGAS): towards rapid, sensitive, quantitative and multiplex molecular diagnosis at the point-of-care level

机译:手持式流动遗传分析系统(FGAS):在现场即时诊断中进行快速,灵敏,定量和多重分子诊断

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A handheld flow genetic analysis system (FGAS) is proposed for rapid, sensitive, multiplex and real-time quantification of nucleic acids at the point-of-care (POC) level. The FGAS includes a helical thermal-gradient microreactor and a microflow actuator, as well as control circuitry for temperature, fluid and power management, and smartphone fluorescence imaging. All of these features are integrated into a field-portable and easy-to-use molecular diagnostic platform powered by lithium batteries. Due to the unique design of the microreactor, not only steady temperatures for denaturation and annealing/extension but also a linear thermal gradient for spatial high-resolution melting can be achieved through simply maintaining a single heater at constant temperature. The smartphone fluorescence imaging system has a wide field of view that captures all PCR channels of the microreactor in a single snapshot without the need for any mechanical scanning. By these designs, the FGAS enables real-time monitoring of the temporal and spatial fluorescence signatures of amplicons during continuous-flow amplification. On the current FGAS, visual detection of as little as 10 copies per mu L of genomic DNA of Salmonella enterica was achieved in 15 min, with real-time quantitative detection of the DNA over 6 orders of magnitude concentration from 10(6) to 10(1) copies per mu L also completed in 7.5-15 min. In addition, multiple pathogenic DNA targets could be simultaneously discriminated with direct bar-chart readout or multiplex spatial melting in serial flow. We anticipate that the FGAS has great potential to become a next-generation gene analyzer for POC molecular diagnostics.
机译:提出了一种手持式流动遗传分析系统(FGAS),用于在即时医疗点(POC)级别对核酸进行快速,灵敏,多重和实时定量。 FGAS包括一个螺旋式热梯度微反应器和一个微流致动器,以及用于温度,流体和功率管理以及智能手机荧光成像的控制电路。所有这些功能都集成到了由锂电池供电的现场便携式且易于使用的分子诊断平台中。由于微反应器的独特设计,通过简单地将单个加热器保持在恒定温度下,不仅可以实现用于变性和退火/延伸的稳定温度,而且可以实现用于空间高分辨率熔融的线性热梯度。智能手机荧光成像系统具有广阔的视野,可在单个快照中捕获微反应器的所有PCR通道,而无需任何机械扫描。通过这些设计,FGAS可以在连续流扩增过程中实时监测扩增子的时间和空间荧光特征。在当前的FGAS上,在15分钟内可以目测每亩L肠炎沙门氏菌基因组DNA少至10个拷贝,并实时定量检测浓度范围从10(6)到10到6个数量级的DNA (1)每亩L的副本也在7.5-15分钟内完成。另外,可以通过直接条形图读数或连续流中的多重空间融合同时区分多个病原性DNA靶标。我们预计FGAS很有潜力成为POC分子诊断的下一代基因分析仪。

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