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Lectin-modified piezoelectric biosensors for bacteria recognition and quantification

机译:凝集素修饰的压电生物传感器用于细菌识别和定量

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摘要

The use of lectins for microorganism biosensors fabrication is proposed. Lectins are immobilised onto a gold-plated quartz crystal for direct piezoelectric label-free transduction of the bacteria–lectin binding event using an electrochemical quartz crystal microbalance (EQCM). Concanavalin A (Con A) and Escherichia coli were used for the evaluation of the lectin immobilisation method and the biosensor performance. Adsorption on nonpolarised and polarised (?0.200 V) gold-coated quartz crystals and immobilisation through avidin–biotin binding were checked for Con A surface attachment. Lectin–bacteria binding was evaluated in all cases. With a crystal modified with Con A via avidin–biotin immobilisation we obtained a linear calibration plot between 5.0 × 106 and 2.0 × 107 cfu mL?1 by measuring frequency changes with E. coli concentration 1 h after bacteria addition. A remarkable increase in sensitivity was achieved when the analytical solution contained free biotinylated Con A, as a consequence of multiple lectin adhesion to Escherichia coli cell wall, which produced an accumulation of Con A–E. coli conjugates in the form of multilayers at the electrode surface. A detection limit of approximately 1.0 × 104 cfu mL?1 was achieved. Moreover nonspecific adsorptions were minimised. Using Con A and lectin from Arachis hypogaea, different response profiles were achieved for Escherichia coli, Staphylococcus aureus and Mycobacterium phlei, thus demonstrating the feasibility of bacteria discrimination. An approach involving filtering of free and lectin-bound bacteria and introduction of a filter in the measuring cell allowed a significant frequency change to be obtained for an E. coli concentration of 1.0 × 103 cfu mL?1 in order to further increase the sensitivity and discriminate between viable and nonviable cells; an approach using electrochemical measurements of bacterial catalase activity was also checked.
机译:提出了凝集素在微生物生物传感器制造中的用途。将凝集素固定在镀金的石英晶体上,使用电化学石英晶体微量天平(EQCM)直接进行无标记的细菌-凝集素结合事件的直接压电转导。伴刀豆球蛋白A(Con A)和大肠杆菌用于评估凝集素固定方法和生物传感器性能。检查非极化和极化(?0.200 V)镀金石英晶体的吸附以及通过抗生物素蛋白-生物素结合的固定化,以确定Con A的表面附着情况。在所有情况下均评估了凝集素与细菌的结合。通过用抗生物素蛋白-生物素固定化Con A修饰的晶体,我们通过测量大肠杆菌的频率变化获得了5.0×106 和2.0×107 cfu mL?1 之间的线性校准图。细菌添加后1小时的浓度。当分析液中含有游离的生物素化的Con A时,由于多种凝集素粘附于大肠杆菌细胞壁上而产生了Con A–E的积累,因此灵敏度得到了显着提高。电极表面呈多层形式的大肠杆菌结合物。检出限约为1.0×104 cfu mL?1 。此外,非特异性吸附被最小化。使用Conachi和来自花生的凝集素,对大肠杆菌,金黄色葡萄球菌和phlei分枝杆菌获得了不同的响应曲线,从而证明了细菌区分的可行性。通过过滤游离的和凝集素结合的细菌并在测量池中引入过滤器,可以使大肠杆菌浓度为1.0×103 cfu mL?1 时获得明显的频率变化。为了进一步提高敏感性并区分活细胞和非活细胞;还检查了使用电化学测量细菌过氧化氢酶活性的方法。

著录项

  • 来源
    《Analytical and Bioanalytical Chemistry》 |2008年第5期|1853-1860|共8页
  • 作者单位

    Department of Analytical Chemistry Faculty of Chemistry Complutense University of Madrid 28040 Madrid Spain;

    Department of Analytical Chemistry Faculty of Chemistry Complutense University of Madrid 28040 Madrid Spain;

    Department of Analytical Chemistry Faculty of Chemistry Complutense University of Madrid 28040 Madrid Spain;

    Department of Analytical Chemistry Faculty of Chemistry Complutense University of Madrid 28040 Madrid Spain;

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

    Lectins; Quartz crystal microbalance; Microorganisms; Biosensors;

    机译:凝集素;石英晶体微量天平;微生物;生物传感器;

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