首页|Simultaneous detection of multiple foodborne bacteria by loop-mediated isothermal amplification on a microfluidic chip through colorimetric and fluorescent assay

Simultaneous detection of multiple foodborne bacteria by loop-mediated isothermal amplification on a microfluidic chip through colorimetric and fluorescent assay

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The integration of loop-mediated isothermal amplification (LAMP) onto a microfluidic chip adds more simplicity and portability for food safety control. However, this system for multiple-target detection was less used on foodborne bacteria. Here, we utilized a ten-well microfluidic chip with pre-loaded LAMP primer sets for the quantitative and qualitative detection of Salmonella, Staphylococcus aureus, Escherichia coli O157:H7, and Shigella. The specificity and sensitivity of designed primers targeting sirA, spA, fliC, and ipaH genes were validated. Using regular tubes and the ten-well microfluidic chips, these four pathogens could be simultaneously detected within 45 min by LAMP with fluorescent and colorimetric readouts, respectively. Finally, the results demonstrated that the limit of detection reached 8 x 10(3) CFU mL(-1) genomic DNA with a recovery rate of 86.1%similar to 110%. In summary, our microfluidic chip platform displayed obvious advantages in time-saving, cost-effectiveness, and sensitivity, which is applicable for in-field monitoring of food pathogens.

Foodborne pathogensMicrofluidic chipLAMPMultiple-target detectionQuantitative analysisSAMPLE PREPARATIONSYSTEMPCRSALMONELLA

Zheng, Junping、Liu, Hongtao、Cao, Yanan、Ye, Cheng、Zhang, Cong、Zhang, Guohao、Hu, Haiming、Zhang, Zhigang、Fang, Haitian

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Hubei Univ Chinese Med

Wuhan Customs Technol Ctr

Beijing Baicare Biotechnol Co Ltd

Ningxia Univ

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2022

Food Control

Food Control

SCI
ISSN:0956-7135
年,卷(期):2022.134
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