首页> 外文会议>Italian Conference on Sensors and Microsystems >DISPOSABLE ELECTROCHEMICAL SENSORS COUPLED TO MAGNETIC BEADS TO MAGNETIC BEADS FOR A RAPID AND SENSITIVE IMMUNODETECTION OF FOOD POLLUTANTS
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DISPOSABLE ELECTROCHEMICAL SENSORS COUPLED TO MAGNETIC BEADS TO MAGNETIC BEADS FOR A RAPID AND SENSITIVE IMMUNODETECTION OF FOOD POLLUTANTS

机译:一次性电化学传感器与磁珠联接到磁珠,用于食品污染物的快速和敏感的免疫珠

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In this work an electrochemical immunomagnetic sensor, based on a direct competitive assay, was developed using magnetic beads as solid phase and carbon screen-printed electrodes as transducers for the detection of sulfonamides. Magnetic beads coated with protein A were modified by immobilization of specific antibodies, then the competition between the target analyte and the corresponding analyte labeled with the enzyme was performed; after the immunosensing step, beads were captured by a magnet onto the working surface of a screen-printed electrode for the electrochemical detection. Screen-printed electrodes (SPEs) were chosen as transducers because they can be easily used in field and their technology allows mass-production at low cost, whereas the use of magnetic beads modified with antibody allowed the simultaneous concentration of the analytes and its separation from other matrix components. Alkaline Phosphatase (AP) was used as enzyme label and Differential Pulse Voltammetry (DPV) as fast electrochemical technique. Calibration curves demonstrate that the developed immunomagnetic sensor was able to detect sulfonamide compounds in standard solutions at low concentrations (sub-ppb level). The fast incubation time (20 min) and electrochemical measurement (10 sec) make of this system a possible alternative to classic ELISA tests.
机译:在这作用中,基于直接竞争性测定的电化学免疫磁传感器是使用磁珠作为固相和碳丝网印刷电极开发的,作为用于检测磺酰胺的换能器。通过固定特异性抗体修饰涂有蛋白质A的磁珠,然后进行靶分析物与用酶标记的相应分析物之间的竞争;在免疫抑制步骤之后,通过磁铁捕获珠子在丝网印刷电极的工作表面上以进行电化学检测。选择丝网印刷电极(SPE)作为换能器,因为它们可以容易地用于现场,其技术允许以低成本的批量生产,而用抗体修饰的磁珠允许同时浓缩分析物和分离其他矩阵组件。碱性磷酸酶(AP)用作酶标记和差分脉冲伏安法(DPV)作为快速电化学技术。校准曲线表明,发育的免疫磁传感器能够以低浓度(亚PPB水平)在标准溶液中检测磺酰胺化合物。快速孵育时间(20分钟)和电化学测量(10秒)使该系统成为经典ELISA测试的可能替代方案。

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