首页> 外文期刊>Analytica chimica acta >Comparison of the Spreeta surface plasmon resonance sensor and a quartz crystal microbalance for detection of Escherichia coli heat-labile enterotoxin
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Comparison of the Spreeta surface plasmon resonance sensor and a quartz crystal microbalance for detection of Escherichia coli heat-labile enterotoxin

机译:Spreeta表面等离子体共振传感器和石英晶体微量天平用于检测大肠杆菌热不稳定肠毒素的比较

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Small, low-cost sensors that rapidly detect pathogens or their toxic products in food and water supplies would facilitate environmental monitoring. However, they must be sufficiently easy to use and reliable enough to be widely deployed. In this study, a small surface plasmon resonance sensor (Spreeta SPR) and a quartz crystal microbalance (QCM) have been evaluated to determine whether the sensitivity, reliability, and ease of operation of one or both devices would be suitable for flow-cell format detection of pathogenic agents. Both make use of a gold-coated surface modified by deposition of a suitable capture agent. In each case, analyte binding to the capture agent results in a quantifiable signal. The model system consisted of Escherichia coli heat-labile enterotoxin (LT), responsible for travelers' diarrhea, and its receptor analog, ganglioside GM_1. Each device provided a roughly proportional response in a range between 3 (35 pmol) and 25 #mu#g (300 pmol) of toxin protein, but began to saturate the adlayer of capture agent at higher toxin concentrations. The Spreeta SPR produced a significant response to 6 #mu#g (70 pmol) of E. coli enterotoxin, while the QCM device produced a measurable response to 3 #mu#g (35 pmol) of E. coli enterotoxin. The two devices are comparable with respect to east of operation and reliability. Both devices could be suitable for remote sensing of analyte from a flow stream with suitable enclosures and temperature-controlled buffering to prevent artifacts induced by temperature fluctuation. There appear to be no significant differences between the Spreeta SPR device compared to a QCM device as a small, low-cost, rapid biodetector. While neither device matches the sensitivity of enzyme-linked immunosorbant assay(ELISA) for detection of picograms amounts of analyte, measurement can be obtained directly, in minutes, rather than the hours required to visualize results of an ELISA.
机译:小型,低成本的传感器可以快速检测食物和水供应中的病原体或其有毒产品,这将有助于环境监测。但是,它们必须足够易于使用,并且必须足够可靠才能被广泛部署。在这项研究中,对小型表面等离子体共振传感器(Spreeta SPR)和石英晶体微量天平(QCM)进行了评估,以确定一种或两种设备的灵敏度,可靠性和易操作性是否适合流通池形式检测病原体。两者都利用通过沉积合适的捕获剂而改性的镀金表面。在每种情况下,分析物与捕获剂的结合都会产生可量化的信号。该模型系统由负责旅行者腹泻的大肠杆菌不耐热肠毒素(LT)及其受体类似物神经节苷脂GM_1组成。每个设备在3(35 pmol)和25#mu#g(300 pmol)的毒素蛋白之间提供大致成比例的响应,但是在较高的毒素浓度下开始使捕获剂的吸附层饱和。 Spreeta SPR对6#mu#g(70 pmol)的大肠杆菌肠毒素产生了显着响应,而QCM设备对3#mu#g(35 pmol)的大肠杆菌肠毒素产生了可测量的响应。就操作和可靠性而言,这两种设备具有可比性。两种设备均适用于用合适的外壳和温度控制的缓冲装置从流量中遥感分析物,以防止温度波动引起的伪影。与作为小型,低成本,快速生物探测器的QCM设备相比,Spreeta SPR设备之间似乎没有显着差异。尽管这两种设备都无法与酶联免疫吸附测定(ELISA)的灵敏度相匹配,但是检测可以直接在几分钟内完成,而不是将ELISA结果可视化所需的数小时。

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