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Environmental Analysis By On-Line Immunoextraction And Reversed-Phase Liquid Chromatography: Optimization Of The Immunoextraction/RPLC Interface

机译:在线免疫提取环境分析 和反相液相色谱: 免疫提取/ RpLC界面的优化

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摘要

The use of antibodies in HPLC columns for on-line immunoextraction combined with reversed-phase liquid chromatography (RPLC) is of growing interest in environmental and agricultural analysis. This technique is typically performed by using a small RPLC precolumn to capture and concentrate analytes as they elute from the immunoextraction column; however, there is little information on the conditions required for optimizing this interface. This study examined the behavior of this interface by using 2,4-dichlorophenoxyacetic acid (2,4-D) and related herbicides as model analytes. It was found that analyte dissociation from immunoextraction columns followed first-order decay and that the elution of these analytes through the immunoextraction/RPLC interface gave an exponentiallymodified Gaussian profile. Computer simulations were used to see how analyte elution through the interface changed with different dissociation and retention conditions. Several guidelines were developed from this work that could be used for developing and optimizing on-line immunoextraction/RPLC systems for other chemicals of environmental or agricultural interest.
机译:在HPLC色谱柱中使用抗体进行在线免疫提取与反相液相色谱(RPLC)相结合,在环境和农业分析中越来越受到关注。通常通过使用小的RPLC预柱来捕获和浓缩从免疫萃取柱洗脱的分析物来执行该技术。但是,关于优化此接口所需条件的信息很少。这项研究通过使用2,4-二氯苯氧基乙酸(2,4-D)和相关除草剂作为模型分析物来检验此界面的行为。发现从免疫提取柱上解离的分析物遵循一阶衰减,并且通过免疫提取/ RPLC界面洗脱这些分析物可得到指数修饰的高斯分布。使用计算机模拟来查看通过界面的分析物洗脱随不同的解离和保留条件如何变化。从这项工作中开发了一些指南,可用于开发和优化针对环境或农业方面其他化学品的在线免疫提取/ RPLC系统。

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