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自动聚焦 MALDI MS 成像在处理食品中的应用实例,如德国姜饼中的污染物丙烯酰胺。

Autofocusing MALDI MS imaging of processed food exemplified by the contaminant acrylamide in German gingerbread.

机构信息

Bioanalytical Sciences and Food Analysis, University of Bayreuth, Universitaetsstrasse 30, 95447, Bayreuth, Germany.

出版信息

Sci Rep. 2023 Apr 3;13(1):5400. doi: 10.1038/s41598-023-32004-w.

Abstract

Acrylamide is a toxic reaction product occurring in dry-heated food such as bakery products. To meet the requirements laid down in recent international legal norms calling for reduction strategies in food prone to acrylamide formation, efficient chromatography-based quantification methods are available. However, for an efficient mitigation of acrylamide levels, not only the quantity, but also the contaminant's distributions are of interest especially in inhomogeneous food consisting of multiple ingredients. A promising tool to investigate the spatial distribution of analytes in food matrices is mass spectrometry imaging (MS imaging). In this study, an autofocusing MALDI MS imaging method was developed for German gingerbread as an example for highly processed and instable food with uneven surfaces. Next to endogenous food constituents, the process contaminant acrylamide was identified and visualized keeping a constant laser focus throughout the measurement. Statistical analyses based on relative acrylamide intensities suggest a higher contamination of nut fragments compared to the dough. In a proof-of-concept experiment, a newly developed in-situ chemical derivatization protocol is described using thiosalicylic acid for highly selective detection of acrylamide. This study presents autofocusing MS imaging as a suitable complementary method for the investigation of analytes' distributions in complex and highly processed food.

摘要

丙烯酰胺是一种在干燥加热的食物中产生的有毒反应产物,如烘焙食品。为了满足最近国际法律规范中关于减少易形成丙烯酰胺的食物策略的要求,已经有了有效的基于色谱的定量方法。然而,为了有效降低丙烯酰胺水平,不仅要关注数量,还要关注污染物的分布,特别是在由多种成分组成的不均匀食品中。质谱成像(MS 成像)是一种研究食品基质中分析物空间分布的有前途的工具。在这项研究中,开发了一种自动聚焦 MALDI MS 成像方法,以德国姜饼为例,研究高度加工和不稳定的、表面不均匀的食物。除了内源性食物成分外,还识别和可视化了过程污染物丙烯酰胺,在整个测量过程中保持恒定的激光焦点。基于相对丙烯酰胺强度的统计分析表明,与面团相比,坚果碎片的污染程度更高。在一个概念验证实验中,描述了一种新开发的原位化学衍生化方案,使用硫代水杨酸进行丙烯酰胺的高选择性检测。本研究提出自动聚焦 MS 成像作为一种合适的补充方法,用于研究复杂和高度加工食品中分析物的分布。

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