Rodriguez-Mozaz S, de Alda M Lopez, Barceló D
Department of Environmental Chemistry, IIQAB-CSIC, C/ Jordi Girona Salgado 18-26, 08034 Barcelona, Spain.
Water Res. 2005 Dec;39(20):5071-9. doi: 10.1016/j.watres.2005.09.023. Epub 2005 Dec 6.
This work describes a very simple, fast and sensitive method based on the use of the optical immunosensor "RIver ANAlyser" (RIANA) to the determination of bisphenol A in a waters. RIANA is based on a rapid solid-phase indirect inhibition immunoassay that takes place at an optical transducer chip chemically modified with an analyte derivative. Fluorescence produced by labelled antibodies bound to the transducer is detected by photodiodes and can be correlated with the analyte concentration. The sensor surface can be regenerated thus allowing the performance of several measurements (around 300) with the same transducer. Each test cycle, including one regeneration step, is accomplished in 15 min. The detection limit achieved in the direct determination of bisphenol A in water with this system was 0.014 microg/L. Satisfactory repeatability, with relative standard deviations (RSD) ranging between 1.48% and 6.93% were obtained. The immunosensor method developed was applied to the monitoring of bisphenol A in various types of water collected in a waterworks (from the river water source to the finished drinking water) and validated against the results obtained in the same approach by a more traditional method, based on solid-phase extraction followed by liquid chromatography-mass spectrometry. Results obtained by both techniques were in general good agreement (considering the typical overestimation bias of immunoassays), and served to prove the satisfactory removal efficiency of the overall purification process applied in the waterworks and, in particular, of the sand filtration step.
这项工作描述了一种基于使用光学免疫传感器“河流分析仪”(RIANA)测定水中双酚A的非常简单、快速且灵敏的方法。RIANA基于一种快速固相间接抑制免疫测定法,该测定法在经分析物衍生物化学修饰的光学换能器芯片上进行。与换能器结合的标记抗体产生的荧光由光电二极管检测,并可与分析物浓度相关联。传感器表面可以再生,从而允许使用同一个换能器进行多次测量(约300次)。每个测试周期,包括一个再生步骤,在15分钟内完成。使用该系统直接测定水中双酚A的检测限为0.014微克/升。获得了令人满意的重复性,相对标准偏差(RSD)在1.48%至6.93%之间。所开发的免疫传感器方法应用于监测自来水厂采集的各种类型水中的双酚A(从河水水源到成品饮用水),并与基于固相萃取后液相色谱-质谱联用的更传统方法以相同方式获得的结果进行了验证。两种技术获得的结果总体上吻合良好(考虑到免疫测定法典型的高估偏差),并有助于证明自来水厂应用的整体净化过程,特别是砂滤步骤的令人满意的去除效率。