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用于过敏原检测、肉类物种鉴定和明胶物种鉴定的液相色谱-串联质谱法进展

Advances in LC-MS/MS Methods for Allergen Testing, Meat Speciation, and Gelatin Speciation.

作者信息

Stahl-Zeng Jianru, Sage Ashley, Taylor Philip, Netto Jeremy Dietrich, Zhang Tuo

机构信息

SCIEX, 500 Old Connecticut Path, Framingham, MA 01701.

出版信息

J AOAC Int. 2019 Sep 1;102(5):1309-1315. doi: 10.5740/jaoacint.19-0059. Epub 2019 Apr 2.

Abstract

Food authenticity is demanded by the consumer at all times. The consumer places trust in the manufacturer that the food product is genuine in terms of what is recorded on the packaging label. Recent advancements in LC-tandem MS methodology in the detection of allergens, meat, and gelatin speciation in raw food products and processed foods are detailed in this paper. For each of the three methods, initial proteome analysis and the screening leading to the determination of unique tryptic peptides were conducted using a high-resolution, accurate tandem mass spectrometer. Having identified the unique markers, the method was transferred to a tandem quadrupole mass spectrometer for a higher-sensitivity quantitative study, multiple reaction monitoring transition analysis. For the allergens method a detection limit of at least 10 ppm was attained across the 12 allergen peptides in this workflow. In the gluten workflow the resulting chromatograms show good detection down to 5 ppm, with no interference from the food matrices. The meat speciation method details that signature peptides could be readily identified at 1% w/w with no matrix interference. These single-injection workflows with cycle-time optimization enable wide coverage of analytes to identify multiple species within challenging matrix samples.

摘要

消费者一直都对食品的真实性有要求。消费者信任制造商,认为食品在包装标签上所记录的内容方面是真实的。本文详细介绍了液相色谱串联质谱法在检测生食产品和加工食品中的过敏原、肉类和明胶种类方面的最新进展。对于这三种方法中的每一种,都使用高分辨率、精确的串联质谱仪进行了初始蛋白质组分析以及导致确定独特胰蛋白酶肽段的筛选。在确定了独特的标志物后,该方法被转移到串联四极杆质谱仪上进行更高灵敏度的定量研究,即多反应监测跃迁分析。对于过敏原方法,在此工作流程中,12种过敏原肽的检测限至少达到10 ppm。在面筋工作流程中,所得色谱图显示在低至5 ppm时仍有良好的检测效果,且不受食品基质的干扰。肉类种类鉴定方法详细说明了在1% w/w时可以轻松鉴定出特征肽,且无基质干扰。这些经过循环时间优化的单注射工作流程能够广泛覆盖分析物,以识别具有挑战性的基质样品中的多种物质。

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