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使用 DIP-APCI-MS 和 LC-MS 定量分析肉桂和香车叶草饮料中的香豆素。

Quantification of coumarin in cinnamon and woodruff beverages using DIP-APCI-MS and LC-MS.

机构信息

Institute for Pure and Applied Mass Spectrometry, University of Wuppertal, Gauss-Str. 20, 42119, Wuppertal, Germany.

出版信息

Anal Bioanal Chem. 2013 Oct;405(25):8337-45. doi: 10.1007/s00216-013-7238-x. Epub 2013 Aug 3.

DOI:10.1007/s00216-013-7238-x
PMID:23912829
Abstract

The use of the direct inlet probe-atmospheric-pressure chemical ionization (DIP-APCI) ion source developed in our laboratory coupled to a high resolution Q-TOF MS for the quantitative analysis of coumarin in different cinnamon samples was demonstrated in this study. Extraction of coumarin from various cinnamon samples was followed by DIP-APCI-mass spectrometry (MS) and liquid chromatography (LC)-MS analysis. For quantification, an external calibration with and without the use of stable isotope-labeled coumarin as internal standard was compared. The results obtained by DIP-APCI-MS and LC-MS were in good agreement. Even without the use of an internal standard satisfying linearity (R(2) > 0.997), recovery (94-104% for spiking levels between 100 and 5,000 mg/kg) and intra- and interday repeatability (2.2-13.8%RSD) was demonstrated using DIP-APCI-MS. To reduce the number of samples requiring quantitative analysis, the possibility of semi-quantitative screening of coumarin directly from powdered cinnamon using DIP-APCI-MS was shown. The analysis of woodruff-flavored beverages and cinnamon-flavored chewing gum by DIP-APCI-MS resulted in the formation of an artifact interfering with coumarin detection. As with other ambient ionization methods, special attention has to be paid to possible spectral interferences due to isobaric substances present in the sample matrix or formed from matrix components after ionization. The temperature-programmed vaporization in DIP-APCI-MS combined with the use of stable isotope-labeled coumarin as internal standard helped in recognizing this interference.

摘要

本研究采用实验室自行开发的直接导入探头-大气压化学电离(DIP-APCI)离子源,结合高分辨 Q-TOF MS,用于定量分析不同肉桂样品中的香豆素。从各种肉桂样品中提取香豆素后,进行 DIP-APCI-质谱(MS)和液相色谱(LC)-MS 分析。对于定量分析,比较了有无使用稳定同位素标记香豆素作为内标进行外标校准的结果。DIP-APCI-MS 和 LC-MS 得到的结果吻合良好。即使不使用内标,也能满足线性(R(2)>0.997),回收率(100-5000mg/kg 加标水平为 94-104%)和日内及日间精密度(2.2-13.8%RSD),这是通过 DIP-APCI-MS 实现的。为了减少需要定量分析的样品数量,展示了直接从粉末状肉桂中使用 DIP-APCI-MS 进行香豆素半定量筛选的可能性。通过 DIP-APCI-MS 分析香草味饮料和肉桂味口香糖,会形成一种干扰香豆素检测的假相。与其他环境电离方法一样,必须特别注意由于样品基质中存在的同量异位物质或电离后由基质成分形成的同量异位物质可能引起的光谱干扰。DIP-APCI-MS 中的程序升温汽化和使用稳定同位素标记香豆素作为内标有助于识别这种干扰。

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