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利用多分析物生物传感器对饮用水处理厂中的有机污染物进行快速同步监测,并随后进行液相色谱-质谱联用验证。

Fast and simultaneous monitoring of organic pollutants in a drinking water treatment plant by a multi-analyte biosensor followed by LC-MS validation.

作者信息

Rodriguez-Mozaz Sara, de Alda Maria J López, Barceló Damià

机构信息

Department of Environmental Chemistry, IIQAB-Consejo Superior de Investigaciones Cientificas, C/ Jordi Girona Salgado 18-26, Barcelona, Spain.

出版信息

Talanta. 2006 Apr 15;69(2):377-84. doi: 10.1016/j.talanta.2005.09.050. Epub 2005 Nov 14.

Abstract

This work describes the application of an optical biosensor (RIver ANALyser, RIANA) to the simultaneous analysis of three relevant environmental organic pollutants, namely, the pesticides atrazine and isoproturon and the estrogen estrone, in real water samples. This biosensor is based on an indirect inhibition immunoassay which takes place at a chemically modified optical transducer chip. The spatially resolved modification of the transducer surface allows the simultaneous determination of selected target analytes by means of "total internal reflection fluorescence" (TIRF). The performance of the immunosensor method developed was evaluated against a well accepted traditional method based on solid-phase extraction followed by liquid chromatography-mass spectrometry (LC-MS). The chromatographic method was superior in terms of linearity, sensitivity and accuracy, and the biosensor method in terms of repeatability, speed, cost and automation. The application of both methods in parallel to determine the occurrence and removal of atrazine, isoproturon and estrone throughout the treatment process (sand filtration, ozonation, activated carbon filtration and chlorination) in a waterworks showed an overestimation of results in the case of the biosensor, which was partially attributed to matrix and cross-reactivity effects, in spite of the addition of ovalbumin to the sample to minimize matrix interferences. Based on the comparative performance of both techniques, the biosensor emerges as a suitable tool for fast, simple and automated screening of water pollutants without sample pretreatment. To the author's knowledge, this is the first description of the application of the biosensor RIANA in the multi-analyte configuration to the regular monitoring of pollutants in a waterworks.

摘要

这项工作描述了一种光学生物传感器(RIver ANALyser,RIANA)在实际水样中同时分析三种相关环境有机污染物的应用,这三种污染物分别是农药阿特拉津和异丙隆以及雌激素雌酮。这种生物传感器基于一种间接抑制免疫分析方法,该方法在化学修饰的光换能器芯片上进行。换能器表面的空间分辨修饰使得能够通过“全内反射荧光”(TIRF)同时测定选定的目标分析物。将所开发的免疫传感器方法的性能与一种基于固相萃取后接液相色谱 - 质谱联用(LC - MS)的公认传统方法进行了评估。色谱方法在线性、灵敏度和准确性方面更具优势,而生物传感器方法在重复性、速度、成本和自动化方面表现更佳。在一家自来水厂的整个处理过程(砂滤、臭氧化、活性炭过滤和氯化)中并行应用这两种方法来测定阿特拉津、异丙隆和雌酮的存在及去除情况,结果表明生物传感器的结果存在高估,尽管向样品中添加了卵清蛋白以尽量减少基质干扰,但这部分归因于基质和交叉反应效应。基于这两种技术的比较性能,生物传感器成为一种无需样品预处理即可快速、简单且自动筛选水中污染物的合适工具。据作者所知,这是首次描述生物传感器RIANA在多分析物配置中应用于自来水厂污染物常规监测的情况。

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