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用于改进农药气相色谱分析的分析物保护剂的评估

Evaluation of analyte protectants to improve gas chromatographic analysis of pesticides.

作者信息

Anastassiades Michelangelo, Mastovská Katerina, Lehotay Steven J

机构信息

US Department of Agriculture, Agricultural Research Service, Eastern Regional Research Center, 600 East Mermaid Lane, Wyndmoor, PA 19038, USA.

出版信息

J Chromatogr A. 2003 Oct 10;1015(1-2):163-84. doi: 10.1016/s0021-9673(03)01208-1.

Abstract

A common problem in gas chromatography (GC) applications is the analyte losses and/or peak tailing due to undesired interactions with active sites in the inlet and column. Analytes that give poor peak shapes or degrade have higher detection limits, are more difficult to identify and integrate, and are more prone to interferences than stable analytes that give narrow peaks. For susceptible analytes, significant peak quality improvements are obtained when matrix components are present because they fill active sites, thus reducing analyte interactions. This phenomenon is called "matrix-induced chromatographic response enhancement." Several approaches have been proposed to minimize peak distortion phenomena and compensate for matrix-induced effects, which is especially important for accurate quantitation, but each approach has serious limitations for routine multi-pesticide analysis. In this study, we demonstrate the feasibility of using "analyte protectants" to provide a more convenient and effective solution to the problem than other approaches developed thus far. The protecting agents are added to extracts and matrix-free standards alike to provide the chromatographic enhancement effect even for the most susceptible analytes in a very dirty GC system. In this study, we evaluated 93 different compounds to find the most suitable ones for improving chromatographic quality of the signal. Because hydrogen bonding has been shown to be an important factor in analyte interactions with active sites, we mainly focused on additives with strong hydrogen bonding capabilities. Dramatic peak enhancements were achieved using compounds containing multiple hydroxy groups, such as sugars and sugar derivatives, and gulonolactone appears to be the most effective protecting agent for the most pesticides that we tested. The benefits of using analyte protectants versus alternative procedures for overcoming matrix-induced effects in quantitation include: (a) simpler procedure; (b) easier integration of peaks; (c) lower detection limits; (d) better quantitation; (e) less maintenance of the GC inlet; and (e) lower cost. However, long-term influences on the performance of the chromatographic system have yet to be established.

摘要

气相色谱(GC)应用中的一个常见问题是,由于与进样口和色谱柱中的活性位点发生不期望的相互作用,导致分析物损失和/或峰拖尾。峰形不佳或发生降解的分析物具有更高的检测限,比峰形窄的稳定分析物更难识别和积分,并且更容易受到干扰。对于易受影响的分析物,当存在基质成分时,峰质量会有显著改善,因为它们会填充活性位点,从而减少分析物之间的相互作用。这种现象被称为“基质诱导的色谱响应增强”。已经提出了几种方法来最小化峰畸变现象并补偿基质诱导的效应,这对于准确定量尤为重要,但每种方法在常规多农药分析中都存在严重局限性。在本研究中,我们证明了使用“分析物保护剂”比迄今开发的其他方法更方便、有效地解决该问题的可行性。将保护剂添加到提取物和无基质标准品中,即使在非常脏的气相色谱系统中,对于最易受影响的分析物也能提供色谱增强效果。在本研究中,我们评估了93种不同的化合物,以找到最适合改善信号色谱质量的化合物。由于氢键已被证明是分析物与活性位点相互作用的一个重要因素,我们主要关注具有强氢键能力的添加剂。使用含有多个羟基的化合物,如糖类和糖衍生物,实现了峰的显著增强,对于我们测试的大多数农药来说,古洛糖酸内酯似乎是最有效的保护剂。与克服基质诱导效应的替代方法相比,使用分析物保护剂在定量方面的优势包括:(a)程序更简单;(b)峰积分更容易;(c)检测限更低;(d)定量更好;(e)气相色谱进样口维护更少;以及(e)成本更低。然而,对色谱系统性能的长期影响尚未确定。

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