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直接竞争型光寻址免疫传感器用于检测真菌毒素玉米赤霉烯酮

Direct and Competitive Optical Grating Immunosensors for Determination of Mycotoxin Zearalenone.

机构信息

Nanobiosensorics Group, Institute for Technical Physics and Material Science, Centre for Energy Research, Konkoly-Thege M. út 29-33, H-1121 Budapest, Hungary.

Food Science Research Institute, National Agricultural Research and Innovation Centre, Herman O. út 15, H-1022 Budapest, Hungary.

出版信息

Toxins (Basel). 2021 Jan 8;13(1):43. doi: 10.3390/toxins13010043.

Abstract

Novel optical waveguide lightmode spectroscopy (OWLS)-based immunosensor formats were developed for label-free detection of mycotoxin zearalenone (ZON). To achieve low limits of detection (LODs), both immobilised antibody-based (direct) and immobilised antigen-based (competitive) assay setups were applied. Immunoreagents were immobilised on epoxy-, amino-, and carboxyl-functionalised sensor surfaces, and by optimising the immobilisation methods, standard sigmoid curves were obtained in both sensor formats. An outstanding LOD of 0.002 pg/mL was obtained for ZON in the competitive immunosensor setup with a dynamic detection range between 0.01 and 1 pg/mL ZON concentrations, depending on the covalent immobilisation method applied. This corresponds to a five orders of magnitude improvement in detectability of ZON relative to the previously developed enzyme-linked immonosorbent assay (ELISA) method. The selectivity of the immunosensor for ZON was demonstrated with structural analogues (α-zearalenol, α-zearalanol, and β-zearalanol) and structurally unrelated mycotoxins. The method was found to be applicable in maize extract using acetonitrile as the organic solvent, upon a dilution rate of 1:10,000 in buffer. Thus, the OWLS immunosensor method developed appears to be suitable for the quantitative determination of ZON in aqueous medium. The new technique can widen the range of sensoric detection methods of ZON for surveys in food and environmental safety assessment.

摘要

新型光学波导光模谱(OWLS)基于免疫传感器格式被开发用于免标记检测真菌毒素玉米赤霉烯酮(ZON)。为了实现低检测限(LOD),应用了基于固定化抗体的(直接)和基于固定化抗原的(竞争)检测设置。免疫试剂被固定在环氧、氨基和羧基功能化的传感器表面上,并通过优化固定化方法,在两种传感器格式中都获得了标准的 S 型曲线。在竞争免疫传感器设置中,ZON 的 LOD 达到 0.002 pg/mL,动态检测范围在 0.01 到 1 pg/mL ZON 浓度之间,具体取决于应用的共价固定化方法。这与之前开发的酶联免疫吸附测定(ELISA)方法相比,ZON 的检测灵敏度提高了五个数量级。免疫传感器对 ZON 的选择性通过结构类似物(α-玉米赤霉烯醇、α-玉米赤霉烯醇和β-玉米赤霉烯醇)和结构上不相关的真菌毒素进行了证明。该方法在使用乙腈作为有机溶剂、在缓冲液中稀释 1:10000 的情况下,在玉米提取物中得到了应用。因此,开发的 OWLS 免疫传感器方法似乎适用于在水介质中定量测定 ZON。这项新技术可以拓宽 ZON 传感器检测方法的范围,用于食品和环境安全评估中的调查。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f69/7827007/6017f41ec9a8/toxins-13-00043-g001.jpg

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