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A new embedded biosensor platform based on micro-electrodes array (MEA) technology

机译:基于微电极阵列(MEA)技术的新型嵌入式生物传感器平台

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摘要

This paper illustrates the application of a multi-response biosensor platform to the simultaneous analysis of several water and food components and contaminants, and demonstrates how this platform can represent a valid support to agrifood industry. This biosensor was based on micro-electrodes array (MEA) technology and employed an array of biological recognition elements intimately integrated to an electrochemical-optical transduction system. The modification of gold micro-electrodes transducer surface allowed the simultaneous determination of selected target analytes by means of amperometric and fluorescence signal variation of immobilized enzymes and micro-organisms able to recognize various food components, like sugars and phenols, and contaminants, like pesticides. The performance of the biosensor platform was evaluated against the traditional electrochemical and optical methods with laboratory set-up instrumentations showing good linearity, sensitivity and repeatability in the detection of glucose, lactose, catechol, atrazine, prometryn and diuron in standard and real samples, with linearity in the micromolar range and with high sensitive limits of detection. In particular, atrazine, prometryn and diuron were detected with a limit of detection of 0.5 nM, 0.31 nM and 0.48 nM, respectively; glucose and lactose were revealed with a limit of detection of 8.5 μM and 90 μM, respectively; catechol was identified with a limit of detection of 1 μM. Based on the comparative performance of laboratory set-up techniques and MEA biosensor, the multi-biosensor platform emerged as a suitable tool for large classes of compounds in fast, simple screening in agrifood quality.
机译:本文说明了多响应生物传感器平台在同时分析几种水和食品成分以及污染物中的应用,并演示了该平台如何为农业食品工业提供有效的支持。该生物传感器基于微电极阵列(MEA)技术,并采用了与生物识别元件紧密集成的电化学光学转导系统。金微电极换能器表面的修饰允许通过固定化酶和能够识别各种食品成分(例如糖和酚)和污染物(例如农药)的酶的安培和荧光信号变化,同时测定选定的目标分析物。生物传感器平台的性能是通过实验室设置仪器相对于传统的电化学和光学方法进行评估的,该仪器在检测标准样品和实际样品中的葡萄糖,乳糖,儿茶酚,阿特拉津,脯氨酰胺和丙磺隆的检测中具有良好的线性,灵敏度和可重复性。在微摩尔范围内具有线性,并具有较高的检测灵敏度极限。特别是,检测到at去津,脯氨酰胺和敌草隆的检出限分别为0.5 nM,0.31 nM和0.48 nM。葡萄糖和乳糖的检出限分别为8.5μM和90μM;儿茶酚的检出限为1μM。基于实验室设置技术和MEA生物传感器的比较性能,该多生物传感器平台已成为适用于快速,简单地筛选农产品质量的大型化合物的合适工具。

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