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Sensitive Electrochemical Immunosensor for Detection of Mycotoxins Aflatoxin B1 Using Disposable screen- Printed Carbon Electrode

机译:敏感电化学免疫传感器,用于使用一次性丝网印刷碳电极检测霉菌毒素的霉菌毒素B1

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This study presented the preparation of sensitive electrochemical immunosensor to detect mycotoxins aflatoxin B1 (AFB1) by immobilization of monoclonal antibodies of AFB1 on disposable screenprinted carbon electrode (SPCE) surface (anti-AFB1/SPCE). The morphological and structural properties of prepared SPCE were studied by XRD and FESEM analysis which showed the carbon structure of SPCE covered the electrode surface with rough and porous morphology. Differential pulse voltammetry (DPV) and Cycle voltammetry (CV) techniques were applied to record the electrochemical responses of anti-AFB1/SPCE and SPCE. CV studies showed the electrochemical responses of anti-AFB1/SPCE were more stable and sensitive toward SPCE in [Fe(CN)6] 3?/4? as redox probe solution due to the synergistic effect between porous morphology of SPCE and immobilization of anti-AFB1 and its the great electrochemical reaction capability and fast rates of electron transfer on anti-AFB1/SPCE surface. DPV measurements showed the linear range and limit of detection of AFB1 on anti-AFB1/SPCE were obtained 10 to 120 ng.ml-1 and 0.007 ng.ml-1 , respectively which illustrating the comparable or better electrochemical performance of anti-AFB1/SPCE for determination of AFB1 in comparison with other reported AFB1 immunosensors in literatures. Studying the capability of antiAFB1/SPCE in a prepared real sample of maize showed the obtained AFB1 concentration in pure real solution was 9.73 ng ml-1 that was consistent with the results obtained by high performance liquid chromatography method. Furthermore, results demonstrated the obtained recovery and relative standard deviation values were acceptable and the prepared immunosensor was reliable to determine AFB1 in real samples.
机译:本研究提出了通过固定一次性筛选碳电极(SPCE)表面(抗-AFB1 / SPCE)的AFB1的单克隆抗体来检测敏感电化学免疫传感器以检测敏感电化学免疫传感器以检测霉菌毒素的霉菌毒素B1(AFB1)。通过XRD和FeSEM分析研究了制备的SPCE的形态学和结构性质,显示了SPCE的碳结构,具有粗糙和多孔的形态覆盖电极表面。差分脉冲伏安法(DPV)和循环伏安法(CV)技术被应用于记录抗AFB1 / SPCE和SPCE的电化学响应。 CV研究表明,抗AFB1 / SPCE的电化学反应更稳定,对SPCE敏感[Fe(CN)6] 3?/ 4?作为氧化还原探针溶液,由于SPCE的多孔形态与抗AFB1的固定性的协同效应及其在抗AFB1 / SPCE表面上的电化学反应能力和电子转移的快速率。 DPV测量显示,抗-FB1 / SPCE上的线性范围和检测AFB1的限制分别获得10至120ng.ml-1和0.007 Ng.ml-1,其说明了抗AFB1 /的可比电化学性能/与其他报告的文献中的其他报告的AFB1免疫传感器相比,用于测定AFB1的SPCE。研究在制备的玉米的真实样品中的抗肌腱/ Spce的能力表明,纯真实溶液中获得的AFB1浓度为9.73ng ML-1,其与通过高效液相色谱法得到的结果一致。此外,结果证明了所得回收率和相对标准偏差值是可接受的,并且制备的免疫传感器可靠以确定真实样品中的AFB1。

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