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Impedance based nanocrystalline silicon oxide immunosensor electronic tongue for ultrasensitive and low cost multiple food toxin detection

机译:基于阻抗的纳米晶氧化硅免疫传感器电子舌,用于超灵敏,低成本的多种食物毒素检测

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Nanocrystalline silicon oxide (nc-SiO2) immunosensor has been reported earlier to detect a single food toxin from a mixture of other toxins with a detection limit of 0.1 fg/ml by impedance spectroscopy method. But there are no reports of detecting multiple food toxins in complex mixtures using these sensors. Usually, detection of `n' number of food toxins requires `n' number of monoclonal antibodies which increases the fabrication cost. In this paper, for the first time, ultrasensitive detection of two target toxins-Aflatoxin B1 (AFB1) and Ochratoxin A (OTA) using only anti-AFBl antibody has been made possible by utilizing the selective peak frequency impedance response and the noise spectroscopy response of nc-SiO2 sensors. An electronic tongue (E-tongue) has been developed using an array of 5 such sensors. Corn seeds have been spiked with different toxin mixtures of AFB1 and OTA and tested with the E-tongue. The extracted parameters have been processed using principal component analysis (PCA) and partial least squares discriminate analysis (PLS-DA). It has been observed that the sensor array, functionalized with only anti-AFB1 antibodies, can quantify both AFB1 and OTA down to 0.1 fg/ml in unknown corn samples using multivariate data analysis. This is the most sensitive and economic E-tongue reported so far for food toxin estimation.
机译:先前已经报道了纳米晶体氧化硅(nc-SiO2)免疫传感器可通过阻抗谱法从其他毒素的混合物中检测出一种食品毒素,其检出限为0.1 fg / ml。但是,尚无使用这些传感器检测复杂混合物中多种食物毒素的报道。通常,要检测n种食物毒素,就需要n种单克隆抗体,这会增加制造成本。本文首次利用选择性峰频率阻抗响应和噪声光谱响应,仅使用抗AFB1抗体就可以超灵敏地检测两种目标毒素-黄曲霉毒素B1(AFB1)和O曲毒素A(OTA) nc-SiO2传感器。已经使用5个这样的传感器的阵列来开发电子舌(电子舌)。玉米种子已经掺入了AFB1和OTA的不同毒素混合物,并用电子舌进行了测试。提取的参数已使用主成分分析(PCA)和偏最小二乘判别分析(PLS-DA)进行了处理。已经观察到,仅使用抗AFB1抗体进行功能化的传感器阵列可以使用多变量数据分析对未知玉米样品中的AFB1和OTA定量至0.1 fg / ml。这是迄今为止估计的食品毒素估计中最敏感和最经济的电子舌。

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