Daegu Research Center for Medical Devices, Korea Institute of Machinery and Materials, Daegu 42994, Korea.
Department of Mechanical Engineering, Kyungpook National University, Daegu 41566, Korea.
Sensors (Basel). 2021 Jan 7;21(2):377. doi: 10.3390/s21020377.
We developed an integrated PCR system that performs automated sample preparation and fast polymerase chain reaction (PCR) for application in point-of care (POC) testing. This system is assembled from inexpensive 3D-printing parts, off-the-shelf electronics and motors. Molecular detection requires a series of procedures including sample preparation, amplification, and fluorescence intensity analysis. The system can perform automated DNA sample preparation (extraction, separation and purification) in ≤5 min. The variance of the automated sample preparation was clearly lower than that achieved using manual DNA extraction. Fast thermal ramp cycles were generated by a customized thermocycler designed to automatically transport samples between heating and cooling blocks. Despite the large sample volume (50 μL), rapid two-step PCR amplification completed 40 cycles in ≤13.8 min. Variations in fluorescence intensity were measured by analyzing fluorescence images. As proof of concept of this system, we demonstrated the rapid DNA detection of pathogenic bacteria. We also compared the sensitivity of this system with that of a commercial device during the automated extraction and fast PCR of bacteria.
我们开发了一种集成的 PCR 系统,可用于即时护理(POC)检测,实现自动化样本制备和快速聚合酶链反应(PCR)。该系统由廉价的 3D 打印部件、现成的电子设备和电机组装而成。分子检测需要一系列程序,包括样本制备、扩增和荧光强度分析。该系统可以在≤5 分钟内完成自动化 DNA 样本制备(提取、分离和纯化)。自动化样本制备的方差明显低于手动 DNA 提取的方差。定制的热循环仪生成快速热 ramp 循环,可自动在加热和冷却块之间传输样品。尽管样品体积较大(50 μL),但快速两步 PCR 扩增在≤13.8 分钟内完成 40 个循环。通过分析荧光图像测量荧光强度的变化。作为该系统的概念验证,我们展示了对致病菌的快速 DNA 检测。我们还比较了在自动化提取和快速 PCR 细菌过程中,该系统与商用设备的灵敏度。