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An ultrasensitive fluorescent biosensor using high gradient magnetic separation and quantum dots for fast detection of foodborne pathogenic bacteria

机译:使用高梯度磁分离和量子点的超灵敏荧光生物传感器,用于快速检测食源性致病菌

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摘要

Rapid screening of contaminated foods is the key to prevent and control the outbreaks of foodborne diseases. In this study, a novel fluorescent biosensor was developed for ultrasensitive and rapid detection ofE. coliO157:H7. The proposed fluorescent biosensor used the double-layer channel with the immune magnetic nanoparticles (MNPs) for specific separation and efficient concentration of the target bacteria, and the immune quantum dots (QDs) with the portable optical system for quantitative detection of the bacteria. First, the bacteria were captured by the immune MNPs in the channel at the presence of the high gradient magnetic fields (HGMFs) to form the MNP-bacteria complexes. Then, the immune QDs were used to react with the target bacteria to form the MNP-bacteria-QDs complexes in the channel. Finally, the enriched complexes were collected and detected using the portable optical system to obtain the fluorescence intensity for final determination of theE. coliO157:H7 cells in the sample. This proposed biosensor was demonstrated to be able to detectE. coliO157:H7 as low as 14 CFU/mL within 2 h. The recovery ofE. coliin the spiked milk samples ranged from 95.92% to 108.15%, indicating that it was capable of detectingE. coliin real samples. Besides, this proposed biosensor was able to detect the bacteria in the volume of 10 mL, and has the potential to detect the bacteria in a larger volume to increase the sensitivity.
机译:快速筛查受污染的食物是预防和控制食源性疾病暴发的关键。在这项研究中,开发了一种新型的荧光生物传感器用于E的超灵敏和快速检测。 coliO157:H7。拟议的荧光生物传感器将双层通道与免疫磁性纳米颗粒(MNP)结合使用,以实现目标细菌的特异性分离和有效浓缩,并通过便携式光学系统将免疫量子点(QD)与定量细菌结合使用。首先,在存在高梯度磁场(HGMF)的情况下,细菌被通道中的免疫MNP捕获,形成MNP-细菌复合物。然后,使用免疫QD与目标细菌反应,在通道中形成MNP-细菌-QD复合体。最后,使用便携式光学系统收集和检测富集的复合物,以获取荧​​光强度,以最终确定E。样品中的coliO157:H7细胞。该提议的生物传感器被证明能够检测E。在2µh内,coliO157:H7低至14µCFU / mL。 E的恢复。加标牛奶样品中的大肠菌素范围从95.92%到108.15%,表明它能够检测E。大肠菌素真实样品。此外,该生物传感器能够检测10µmL的细菌,并具有检测更大体积的细菌的潜力,以提高灵敏度。

著录项

  • 来源
    《Sensors and Actuators》 |2018年第7期|318-325|共8页
  • 作者单位

    Key Laboratory of Agricultural Information Acquisition Technology, Ministry of Agriculture, China Agricultural University;

    Key Laboratory of Modern Precision Agriculture System Integration Research, Ministry of Education, China Agricultural University;

    Key Laboratory of Modern Precision Agriculture System Integration Research, Ministry of Education, China Agricultural University;

    Key Laboratory of Technology Integration and Application in Agricultural Internet of Things, Ministry of Agriculture, Anhui Agricultural University;

    Key Laboratory of Agricultural Information Acquisition Technology, Ministry of Agriculture, China Agricultural University,Key Laboratory of Modern Precision Agriculture System Integration Research, Ministry of Education, China Agricultural University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fluorescent biosensor; Double-layer channel; High gradient magnetic separation; Quantum dots; E. coliO157:H7;

    机译:荧光生物传感器;双层通道;高梯度磁分离;量子点;E。 coliO157:H7;

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