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Battery-Powered Portable Rotary Real-Time Fluorescent qPCR with Low Energy Consumption, Low Cost, and High Throughput

机译:电池供电的便携式旋转实时荧光QPCR,能耗低,成本低,吞吐量高

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摘要

The traditional qPCR instrument is bulky, expensive, and inconvenient to carry, so we report a portable rotary real-time fluorescent PCR (polymerase chain reaction) that completes the PCR amplification of DNA in the field, and the reaction can be observed in real-time. Through the analysis of a target gene, namely pGEM-3Zf (+), the gradient amplification and melting curves are compared to commercial devices. The results confirm the stability of our device. This is the first use of a mechanical rotary structure to achieve gradient amplification curves and melting curves comparable to commercial instruments. The average power consumption of our system is about 7.6 W, which is the lowest energy consumption for real-time fluorescence quantification in shunting PCR and enables the use of our device in the field thanks to its self-contained power supply based on a lithium battery. In addition, all of the equipment costs only about 710 dollars, which is far lower than the cost of a commercial PCR instrument because the control system through mechanical displacement replaces the traditional TEC (thermoelectric cooler) temperature control. Moreover, the equipment has a low technical barrier, which can suit the needs of non-professional settings, with strong repeatability.
机译:传统的QPCR仪器庞大,昂贵,携带不方便,所以我们报告了一种便携式的旋转实时荧光PCR(聚合酶链反应),完成了该田间DNA的PCR扩增,并且可以在真实中观察到反应时间。通过对靶基因的分析,即PGEM-3ZF(+),将梯度扩增和熔化曲线与商业设备进行比较。结果证实了我们设备的稳定性。这是第一次使用机械旋转结构,以实现与商业仪器相当的梯度放大曲线和熔化曲线。我们的系统的平均功耗约为7.6W,这是分流PCR实时荧光量化的能耗最低,并且由于基于锂电池的自包含电源,因此可以在现场中使用我们的设备。此外,所有设备只需约710美元,远低于商业PCR仪器的成本,因为通过机械位移的控制系统取代了传统的TEC(热电冷却器)温度控制。此外,该设备具有较低的技术障碍,可满足非专业设置的需求,具有很强的可重复性。

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