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利用白光反射光谱免疫传感器快速、灵敏、选择性地测定水样中的除草剂草甘膦。

Fast, sensitive and selective determination of herbicide glyphosate in water samples with a White Light Reflectance Spectroscopy immunosensor.

机构信息

Immunoassays-Immunosensors Lab, INRASTES, NCSR "Demokritos", 15341, Aghia Paraskevi, Greece; Analytical Chemistry Lab, Department of Chemistry, University of Athens, Panepistimiopolis, 15771, Zografou, Greece.

Immunoassays-Immunosensors Lab, INRASTES, NCSR "Demokritos", 15341, Aghia Paraskevi, Greece.

出版信息

Talanta. 2020 Jul 1;214:120854. doi: 10.1016/j.talanta.2020.120854. Epub 2020 Feb 17.

Abstract

An optical immunosensor based on White Light Reflectance Spectroscopy is described for the determination of the herbicide glyphosate in drinking water samples. The biosensor allows for the label-free real-time monitoring of biomolecular interactions taking place onto a SiO/Si chip by transforming the shift in the reflected interference spectrum caused by the immunoreaction to effective biomolecular adlayer thickness. Glyphosate determination is accomplished by functionalizing the chip with a protein conjugate of the herbicide followed by a competitive immunoassay format. Prior to the assay, glyphosate derivatization in the calibrators and/or the samples was performed through reaction with succinic anhydride. Under the optimized assay protocol, a detection limit of 10 pg mL was achieved. Recovery values ranging from 90.0 to 110% were determined in spiked bottled and tap water samples, demonstrating the accuracy of the method. In addition, the sensor could be regenerated and re-used for at least 14 times without statistically significant effect on the assay sensitivity and accuracy. The excellent analytical performance and short analysis time (approx. 25 min), combined with the small sensor size, should be helpful for the fast on-site determination of glyphosate in drinking water samples.

摘要

本文描述了一种基于白光反射光谱的光学免疫传感器,用于测定饮用水样品中的除草剂草甘膦。该生物传感器允许通过将免疫反应引起的反射干涉光谱的位移转化为有效生物分子吸附层厚度,实现对 SiO2/Si 芯片上生物分子相互作用的无标记实时监测。通过用草甘膦的蛋白质缀合物对芯片进行功能化,然后进行竞争性免疫分析,完成草甘膦的测定。在分析之前,通过与琥珀酸酐反应,在校准品和/或样品中进行草甘膦衍生化。在优化的分析方案下,检测限达到 10 pg mL-1。在加标瓶装水和自来水样品中,回收率值在 90.0%至 110%之间,表明该方法具有准确性。此外,该传感器可以再生和重复使用至少 14 次,而对分析灵敏度和准确性没有统计学上的显著影响。该传感器具有出色的分析性能和较短的分析时间(约 25 分钟),加上传感器尺寸小,应该有助于快速现场测定饮用水中的草甘膦。

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