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双通道 ITO 微流控电化学免疫传感器用于同时检测两种真菌毒素。

Dual-channel ITO-microfluidic electrochemical immunosensor for simultaneous detection of two mycotoxins.

机构信息

Department of Biological Systems Engineering, University of Wisconsin-Madison, Madison, WI 53706, USA.

Department of Biological Systems Engineering, University of Wisconsin-Madison, Madison, WI 53706, USA.

出版信息

Talanta. 2019 Mar 1;194:709-716. doi: 10.1016/j.talanta.2018.10.091. Epub 2018 Oct 30.

Abstract

Due to the widely occurring co-contamination of mycotoxins in raw food materials, simultaneous monitoring of multiple mycotoxins is needed. Herein, we report the design and fabrication of an electrochemical immunosensor for simultaneous detection of two mycotoxins, fumonisin B1 (FB1) and deoxynivalenol (DON), in a single test. A dual-channel three-electrode electrochemical sensor pattern was etched on a transparent indium tin oxide (ITO)-coated glass via photolithography and was integrated with capillary-driven polydimethylsiloxane (PDMS) microfluidic channel. The two working electrodes were functionalized with gold nanoparticles and anti-FB1 and anti-DON antibodies. Tests were performed by incubating the working electrodes in a sample solution introduced in the PDMS channel. The formation of toxin-antibody immunocomplexes on the working electrode surface produced electrochemical signal responses, which were recorded and compared with control signal to quantify individual mycotoxin concentrations. Using this dual-channel ITO-microfluidic electrochemical immunosensor we achieved limits of detection (LODs) of 97 pg/mL and 35 pg/mL, respectively for FB1 and DON, and their corresponding linear ranges of detection were 0.3-140 ppb and 0.2-60 ppb. The sensor performance, which remained stable for two weeks under proper storage, was validated by testing with ground corn extract used as a real food matrix.

摘要

由于真菌毒素在原材料中普遍存在混合污染的情况,因此需要同时监测多种真菌毒素。在此,我们报告了一种电化学免疫传感器的设计和制造,用于同时检测两种真菌毒素,伏马菌素 B1(FB1)和脱氧雪腐镰刀菌烯醇(DON),在单次测试中。通过光刻技术在透明的铟锡氧化物(ITO)涂覆玻璃上刻蚀双通道三电极电化学传感器图案,并与毛细管驱动的聚二甲基硅氧烷(PDMS)微流控通道集成。两个工作电极用金纳米粒子和抗 FB1 和抗 DON 抗体功能化。通过在 PDMS 通道中引入的样品溶液孵育工作电极来进行测试。毒素-抗体免疫复合物在工作电极表面的形成产生了电化学信号响应,通过记录和与对照信号进行比较来定量单个真菌毒素的浓度。使用这种双通道 ITO-微流控电化学免疫传感器,我们分别实现了对 FB1 和 DON 的检测限(LOD)为 97 pg/mL 和 35 pg/mL,检测线性范围分别为 0.3-140 ppb 和 0.2-60 ppb。该传感器的性能在适当储存条件下保持稳定两周,通过对用作真实食品基质的地面玉米提取物进行测试得到了验证。

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