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使用修饰气发生装置、分析物保护剂和多个内标物,可有效、稳健地补偿农药气相色谱分析中的基质效应。

Combined use of a modifier gas generator, analyte protectants and multiple internal standards for effective and robust compensation of matrix effects in gas chromatographic analysis of pesticides.

机构信息

Department of Food, Nagoya City Public Health Research Institute, 1-11, Hagiyama-cho, Mizuho-ku, Nagoya 467-8615, Japan.

Department of Food, Nagoya City Public Health Research Institute, 1-11, Hagiyama-cho, Mizuho-ku, Nagoya 467-8615, Japan.

出版信息

J Chromatogr A. 2019 Mar 29;1589:122-133. doi: 10.1016/j.chroma.2018.12.051. Epub 2018 Dec 30.

Abstract

In the analysis of pesticides performed with gas chromatography, the quantitative performance of measurements can be severely compromised by phenomena known as matrix effects. In seeking a solution to the problem of matrix effects, the application of a modifier gas generator (MGG) was investigated in this study, together with analyte protectants and multiple internal standards. Ethylene glycol (EG) was used as modifier gas and matrix effects in GCMS analysis were then evaluated by using the extracts of various food commodities. MGG was used in combination with other known methods of matrix effect compensation and its performance in reducing matrix effects tested. We have found that by combining MGG with conventional analyte protectants, matrix effects were substantially reduced for most of pesticides. Use of EG was especially effective for organophosphate pesticides and those with amino groups. Using this approach, the shortcomings of conventional analyte protectants were remedied. Although neither EG nor analyte protectants could sufficiently reduce the matrix effects for certain classes of pesticides, this limitation could be overcome with the use of multiple internal standards (IS) in the analysis. Finally, it was shown that the method we developed could achieve better analytical performance than the matrix-matched calibration method. Our method was robust with respect to the variation of food matrix components, so its application to real-world analyses would be practical and promising.

摘要

在使用气相色谱分析农药时,由于基质效应等现象的存在,会严重影响测量的定量性能。为了解决基质效应的问题,本研究考察了使用改性气发生器(MGG)以及分析物保护剂和多个内标物的方法。本研究使用乙二醇(EG)作为改性气体,通过对各种食品的提取物进行 GCMS 分析,评估了 MGG 在 GCMS 分析中的应用及其对基质效应的影响。研究发现,MGG 与传统的基质效应补偿方法相结合,可以显著降低大多数农药的基质效应。对于有机磷农药和含氨基的农药,使用 EG 特别有效。通过这种方法,可以弥补传统分析物保护剂的不足。虽然 EG 和分析物保护剂都不能充分降低某些类别的农药的基质效应,但通过在分析中使用多个内标物(IS)可以克服这一限制。最后,结果表明,我们开发的方法可以比基质匹配校准方法获得更好的分析性能。我们的方法对食品基质成分的变化具有稳健性,因此其在实际分析中的应用具有实际意义和广阔前景。

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