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新型免疫荧光仪器原型在除草剂草甘膦测定中的应用。

Utilization of a Novel Immunofluorescence Instrument Prototype for the Determination of the Herbicide Glyphosate.

机构信息

Agro-Environmental Research Centre, Institute of Environmental Sciences, Hungarian University of Agriculture and Life Sciences, Herman O. út 15, H-1022 Budapest, Hungary.

Institute of Isotopes Co. Ltd., Konkoly-Thege Miklós út 29-33, H-1121 Budapest, Hungary.

出版信息

Molecules. 2022 Oct 2;27(19):6514. doi: 10.3390/molecules27196514.

Abstract

An enzyme-linked fluorescent immunoassay (ELFIA) method has been developed for the quantitative analytical determination of the herbicide active ingredient glyphosate in environmental matrices (surface water, soil, and plant tissues). Glyphosate, as a ubiquitous agricultural pollutant, is a xenobiotic substance with exposure in aquatic and terrestrial ecosystems due its extremely high worldwide application rate. The immunoassay developed in Project Aquafluosense is part of a fluorescence-based instrumentation setup for the in situ determination of several characteristic water quality parameters. The 96-well microplate-based competitive immunoassay method applies fluorescence signal detection in the concentration range of 0-100 ng/mL glyphosate. Application of the fluorescent signal provides a limit of detection of 0.09 ng/mL, which is 2.5-fold lower than that obtained with a visual absorbance signal. Beside the improved limit of detection, determination by fluorescence provided a wider and steeper dynamic range for glyphosate detection. No matrix effect appeared for the undiluted surface water samples, while plant tissues and soil samples required dilution rates of 1:10 and 1:100, respectively. No cross-reaction was determined with the main metabolite of glyphosate, N-aminomethylphosphonic acid, and related compounds.

摘要

已开发出一种酶联荧光免疫分析 (ELFIA) 方法,用于定量分析环境基质(地表水、土壤和植物组织)中的除草剂有效成分草甘膦。草甘膦作为一种普遍存在的农业污染物,是一种具有生物异源性的物质,由于其在全球范围内的极高应用率,它在水生和陆地生态系统中都有暴露。Aquafluosense 项目中开发的免疫分析是基于荧光的仪器设备设置的一部分,用于原位测定几个特征水质参数。基于 96 孔微孔板的竞争性免疫分析方法在 0-100ng/mL 草甘膦浓度范围内应用荧光信号检测。荧光信号的应用提供了 0.09ng/mL 的检测限,比使用可见吸收信号获得的检测限低 2.5 倍。除了提高检测限外,荧光法还为草甘膦检测提供了更宽和更陡峭的动态范围。未稀释的地表水样品没有出现基质效应,而植物组织和土壤样品分别需要稀释 1:10 和 1:100。与草甘膦的主要代谢物 N-氨甲基膦酸及其相关化合物没有交叉反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b273/9570942/f8f96aaab4e5/molecules-27-06514-g001.jpg

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