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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Dielectrophoresis assisted immuno-capture and detection of foodborne pathogenic bacteria in biochips
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Dielectrophoresis assisted immuno-capture and detection of foodborne pathogenic bacteria in biochips

机译:介电电泳辅助免疫捕获和检测生物芯片中食源性致病菌

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摘要

This study integrated dielectrophoresis (DEP) with non-flow through biochips to enhance the immuno-capture and detection of foodborne pathogenic bacteria. It demonstrated two major functions provided by DEP to improve the chip performance: (i) concentrating bacterial cells from the suspension to different locations on the chip surface by positive and negative DEP; (ii) making the cells in close contact with the immobilized antibodies on the chip surface so that immuno-capture efficiency can be dramatically enhanced. The microchip achieved the immuno-capture efficiencies of similar to 56.0% and similar to 64.0% to Salmonella cells with 15 and 30 min DEP respectively, which were considerably higher than those of similar to 10.4% and similar to 17.6% for 15 and 30 min immuno-capture without DEP. The immuno-captured bacterial cells were detected by the sandwich format ELISA on the chips. The final absorbance signals were enhanced by DEP assisted immuno-capture by 64.7-105.2% for the samples containing 10(3)-10(6) cells/20 mu l. The integration of DEP with the biochips has the potential to advance the chip-based immunoassay methods for microbial detection.
机译:这项研究将介电泳(DEP)与不流经生物芯片相结合,以增强对食源性致病细菌的免疫捕获和检测。它展示了DEP提供的改善芯片性能的两个主要功能:(i)通过正负DEP将悬浮液中的细菌细胞浓缩到芯片表面的不同位置; (ii)使细胞与芯片表面上固定的抗体紧密接触,从而可以显着提高免疫捕获效率。微芯片分别在15和30分钟的DEP时对沙门氏菌细胞的免疫捕获效率分别达到了56.0%和64.0%,远高于在15和30分钟时分别达到10.4%和17.6%的沙门氏菌细胞。没有DEP的免疫捕获。通过芯片上的夹心格式ELISA检测免疫捕获的细菌细胞。对于包含10(3)-10(6)个细胞/ 20μl的样品,DEP辅助免疫捕获将最终吸收信号提高了64.7-105.2%。 DEP与生物芯片的集成具有推动基于芯片的微生物检测免疫分析方法的潜力。

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