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用于农药环境生物传感的多分析物表面等离子体共振免疫分析

Multi-analyte SPR immunoassays for environmental biosensing of pesticides.

作者信息

Mauriz E, Calle A, Manclús J J, Montoya A, Lechuga L M

机构信息

Biosensors Group, Microelectronics National Centre, CSIC, Isaac Newton 8, 28760 Tres Cantos, Madrid, Spain.

出版信息

Anal Bioanal Chem. 2007 Feb;387(4):1449-58. doi: 10.1007/s00216-006-0800-z. Epub 2006 Oct 25.

Abstract

Multi-analyte detection of environmentally relevant pesticides is performed by using a two-channelled surface plasmon resonance (SPR) biosensor. The special design of the SPR instrument allows the determination of several analytes (DDT, chlorpyrifos and carbaryl) via different immobilization formats. First, simultaneous pesticide monitoring is possible by flowing chlorpyrifos, carbaryl or DDT samples separately over each channel of the SPR system, wherein their corresponding recognition element was previously immobilized. The second approach is based on the multiple and combined immobilization of several analyte recognition elements on the sensing surface of one individual flow cell. In this format, the analysis time for all three pesticides varied from 40 to 60 min depending on the number of regeneration cycles. In most cases, similar detection limits were attained for the target analyte irrespective of the assay format, with sensitivity values at the nanogram per litre level (18-50 ng L(-1)). The assay reproducibility was proved through the repeated use of the same sensor surface for over more than 200 assay cycles, whereas the absence of biosensor response to non-related analytes showed the specificity and reliability of the analysis. The SPR instrument, including optics, electronics and microfluidics, is already commercialised by the company SENSIA, SL.

摘要

使用双通道表面等离子体共振(SPR)生物传感器对环境相关农药进行多分析物检测。SPR仪器的特殊设计允许通过不同的固定化形式测定几种分析物(滴滴涕、毒死蜱和西维因)。首先,通过将毒死蜱、西维因或滴滴涕样品分别流过SPR系统的每个通道,可以实现农药的同时监测,其中其相应的识别元件已预先固定。第二种方法基于将几种分析物识别元件多重且组合固定在单个流通池的传感表面上。在这种形式下,根据再生循环次数,所有三种农药的分析时间为40至60分钟。在大多数情况下,无论测定形式如何,目标分析物的检测限相似,灵敏度值在纳克每升水平(18 - 50 ng L(-1))。通过在超过200个测定循环中重复使用同一传感器表面证明了测定的重现性,而生物传感器对非相关分析物无响应表明了分析的特异性和可靠性。包括光学、电子学和微流体学的SPR仪器已由SENSIA公司商业化。

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