Li Jinchao, Cheng Jingmeng, Li Shanshan, Wu Jie Jayne, Li Junwei
Hebei Key Laboratory of Smart Sensing and Human-Robot Interactions, School of Mechanical Engineering, Hebei University of Technology, Tianjin 300130, China.
State Key Laboratory of Reliability and Intelligence of Electrical Equipment, Hebei University of Technology, Tianjin 300130, China.
Micromachines (Basel). 2023 Aug 17;14(8):1619. doi: 10.3390/mi14081619.
In this work, we proposed a chamber-based digital PCR (cdPCR) microfluidic device that is compatible with fluorescence imaging systems for milk adulteration detection. The device enables the digitalization of PCR reagents, which are loaded into microchambers, and subsequent thermocycling for DNA amplification. Then, fluorescence images of the microchambers are captured and analyzed to obtain the total number of positive chambers, which is used to calculate the copy numbers of the target DNA, enabling accurate quantitative detections to determine intentional milk adulteration from accidental contaminations. The validation of this device is performed by camel milk authentication. We performed 25,600-chamber virtual multiplexing cdPCR tests using 40 × 40 chamber devices for the detection of DNA templates extracted from pure or mixed milk with different dilutions. Then, the cdPCR chip was used to authenticate blind milk samples, demonstrating its efficacy in real biotechnical applications.
在这项工作中,我们提出了一种基于腔室的数字PCR(cdPCR)微流控装置,该装置与用于牛奶掺假检测的荧光成像系统兼容。该装置能够将装入微腔室的PCR试剂数字化,并随后进行热循环以进行DNA扩增。然后,捕获并分析微腔室的荧光图像,以获得阳性腔室的总数,该总数用于计算目标DNA的拷贝数,从而能够进行准确的定量检测,以区分有意的牛奶掺假和意外污染。该装置通过骆驼奶鉴定进行验证。我们使用40×40腔室的装置进行了25600腔室虚拟多重cdPCR测试,以检测从不同稀释度的纯牛奶或混合牛奶中提取的DNA模板。然后,使用cdPCR芯片对未知牛奶样品进行鉴定,证明了其在实际生物技术应用中的有效性。