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利用个人 SPR 传感器检测食品致病菌的不对称聚合酶链反应的最佳条件。

Optimal Conditions for the Asymmetric Polymerase Chain Reaction for Detecting Food Pathogenic Bacteria Using a Personal SPR Sensor.

机构信息

Department of Biochemistry and Applied Chemistry, National Institute of Technology, Kurume College, 1-1-1 Komorino, Kurume, Fukuoka, 830-8555, Japan.

Biotechnology and Food Research Institute, Fukuoka Industrial Technology Center, 1465-5 Aikawa, Kurume, Fukuoka, 839-0861, Japan.

出版信息

Appl Biochem Biotechnol. 2019 Jan;187(1):323-337. doi: 10.1007/s12010-018-2819-y. Epub 2018 Jun 26.

Abstract

We have been developing quick and simple system for detecting food-poisoning bacteria using a combination of an asymmetric PCR and a portable surface plasmon resonance (SPR) sensor. The system would be suitable for point-of-care detection of food-poisoning bacteria in the field of food industry. In this study, we established a novel method for quantifying the amplified forward (F) and reverse (R) chains of Staphylococcus aureus separately by high-performance liquid chromatography (HPLC). The concentration of single-stranded DNA amplicon excessively amplified, which is crucial for the system, could be calculated as the difference between those of the F- and R-chains. For the R-chain, a correction based on the F-chain concentration in the sample was used to obtain a more accurate value, because the determination of the R-chain concentration was affected by that of the coexisting F-chain. The concentration values were also determined by fluorescence imaging for electrophoresis gels of amplicons with FITC- or Cy5-conjugated primers, and they were in good agreement with the values by the HPLC. The measured concentration of the single-strand F-chain correlated well with the value of the SPR response against the probe that was a complementary sequence of the F-chain, immobilized on the sensor chip of the SPR sensor.

摘要

我们一直在开发一种快速简便的系统,该系统使用不对称 PCR 和便携式表面等离子体共振 (SPR) 传感器组合来检测食源性病原体。该系统适用于食品工业领域现场检测食源性病原体。在这项研究中,我们建立了一种通过高效液相色谱法 (HPLC) 分别定量扩增的正向 (F) 和反向 (R) 链的新方法。对于该系统至关重要的是,过度扩增的单链 DNA 扩增子的浓度可以通过 F-和 R-链之间的差异来计算。对于 R-链,根据样品中 F-链的浓度进行了校正,以获得更准确的值,因为 R-链浓度的测定受到共存 F-链的影响。还通过荧光成像测定了用 FITC 或 Cy5 标记的引物扩增子的电泳凝胶的浓度值,并且与 HPLC 的值吻合良好。单链 F-链的测量浓度与针对固定在 SPR 传感器的传感器芯片上的探针的 SPR 响应值呈良好相关性,该探针是 F-链的互补序列。

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