Department of Food Chemistry and Analysis, Institute of Chemical Technology, Prague, Czech Republic.
Anal Bioanal Chem. 2012 Mar;402(9):2871-83. doi: 10.1007/s00216-012-5732-1.
A sensitive and accurate method utilizing ultrahigh performance liquid chromatography (U-HPLC) coupled to high resolution mass spectrometry based on orbitrap technology (orbitrapMS) for the analysis of nine 3-chloropropane-1,2-diol (3-MCPD) diesters in vegetable oils was developed. To remove the interfering triacylglycerols that induce strong matrix effects, a clean-up step on silica gel column was used. The quantitative analysis was performed with the use of deuterium-labeled internal standards. The lowest calibration levels estimated for the respective analytes ranged from 2 to 5 μg kg(-1). Good recovery values (89-120%) and repeatability (RSD 5-9%) was obtained at spiking levels of 2 and 10 mg kg(-1). As an alternative, a novel ambient desorption ionization technique, direct analysis in real time (DART), hyphenated with orbitrapMS, was employed for no separation, high-throughput, semi-quantitative screening of 3-MCPD diesters in samples obtained by chromatographic fractionation. Additionally, the levels of 3-MCPD diesters measured in reallife vegetable oil samples (palm oil, sunflower oil, rapeseed oil) using both methods are reported. Relatively good agreement of the data generated by U-HPLC-orbitrapMS and DART-orbitrapMS were observed. With regard to a low ionization yield achieved for 3-MCPD monoesters, the methods presented in this paper were not yet applicable for the analysis of these contaminants at the naturally occurring levels.
建立了一种利用超高效液相色谱(U-HPLC)与基于轨道阱技术的高分辨质谱(orbitrapMS)联用,分析植物油中 9 种 3-氯-1,2-丙二醇(3-MCPD)二酯的灵敏、准确的方法。为了去除会引起强烈基质效应的干扰三酰基甘油,采用硅胶柱净化步骤。使用氘标记的内标进行定量分析。各分析物的最低校准水平估计在 2 至 5μgkg(-1)之间。在 2 和 10mgkg(-1)的添加水平下,获得了良好的回收率(89-120%)和重复性(RSD 5-9%)。作为替代方法,还采用了一种新颖的环境解吸电离技术,即直接实时分析(DART),与轨道阱 MS 联用,对色谱分离得到的样品进行无需分离、高通量、半定量筛选 3-MCPD 二酯。此外,还报告了使用这两种方法测量的实际植物油样品(棕榈油、葵花籽油、菜籽油)中 3-MCPD 二酯的水平。观察到 U-HPLC-OrbitrapMS 和 DART-OrbitrapMS 生成的数据具有较好的一致性。由于 3-MCPD 单酯的电离产率较低,本文提出的方法尚不适用于分析这些在自然存在水平下的污染物。