National Research Council of Italy (ISPA-CNR), Bari, Italy.
J Chromatogr A. 2011 Dec 2;1218(48):8646-54. doi: 10.1016/j.chroma.2011.10.008. Epub 2011 Oct 10.
A sensitive and accurate method employing a single stage high resolution mass spectrometer equipped with a high-energy collision-dissociation cell (HCD) for the simultaneous determination of deoxynivalenol (DON), T-2 toxin (T-2) and HT-2 toxin (HT-2) in a processed bread model food has been developed. Two sample pre-treatment routes for the extraction of these mycotoxins were investigated, based on Mycosep(®) column clean up or QuEChERS-like procedure, respectively. The former approach suffered less from matrix effects and allowed to achieve in bread samples LODs of 7, 12 and 17 ng/g for T-2, HT-2 and DON, respectively, with 0.5 ppm mass accuracy. Two acquisition modes, full scan MS and all ion fragmentation, exploiting the fragmentation features offered by an HCD chamber and integrated within the Orbitrap analyser, were compared for quantitative purposes. The method was applied to investigate the degradation of these mycotoxins during bread processing using a bread model food. Most T-2 hydrolyzed to HT-2 during dough preparation, and about 20-30% of HT-2 and DON was degraded during bread baking.
建立了一种采用单级高分辨率质谱仪并配备高能碰撞解离池(HCD)的灵敏、准确的方法,可同时测定加工面包模型食品中的脱氧雪腐镰刀菌烯醇(DON)、T-2 毒素(T-2)和 HT-2 毒素(HT-2)。分别基于 Mycosep®柱净化或 QuEChERS 样程序,研究了两种提取这些霉菌毒素的样品前处理方法。前者受到的基质效应较小,允许在面包样品中实现 T-2、HT-2 和 DON 的检测限分别为 7、12 和 17 ng/g,质量准确度为 0.5 ppm。为了定量目的,比较了利用 HCD 腔提供的碎片特征并集成在 Orbitrap 分析仪中的全扫描 MS 和所有离子碎裂两种采集模式。该方法用于研究这些霉菌毒素在面包加工过程中的降解情况,使用面包模型食品。在面团准备过程中,大部分 T-2 水解为 HT-2,在面包烘焙过程中,大约 20-30%的 HT-2 和 DON 被降解。