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迈向非靶向性主动食品安全:通过与集成模拟胃肠道消化的十维连接,鉴定方便番茄制品中的活性化合物。

Towards non-target proactive food safety: identification of active compounds in convenience tomato products by ten-dimensional hyphenation with integrated simulated gastrointestinal digestion.

机构信息

Institute of Nutritional Science, Chair of Food Science, Justus Liebig University Giessen, Heinrich-Buff-Ring 26-32, 35392, Giessen, Germany.

出版信息

Anal Bioanal Chem. 2024 Jan;416(3):715-731. doi: 10.1007/s00216-023-04656-0. Epub 2023 Mar 29.

Abstract

Current strategies for non-target food screening focus mainly on known hazardous chemicals (adulterants, residues, contaminants, packaging migrants, etc.) instead of bioactive constituents in general and exclude the biological effect detection. To widen the perspective, a more proactive non-target effect-directed strategy is introduced to complement food safety in order to detect not only known but also unknown bioactive compounds. The developed 10-dimensional hyphenation included on-surface digestion (1D), planar chromatographic separation (2D), visualization using white light (3D), UV light (4D), fluorescence light (5D), effect-directed assay analysis (6D), heart-cut zone elution to an orthogonal reversed phase column chromatography including online desalting (7D) with subsequent diode array detection (8D), high-resolution mass spectrometry (9D), and fragmentation (10D). Metabolism, i.e., intestinal digestion of each sample, was simulated and integrated on the same adsorbent surface to study any changes in the compound profiles. As proof of principle, nine convenience tomato products and a freshly prepared tomato soup were screened via five different planar assays in a non-targeted mode. Non-digested and digested samples were compared side by side. In their effect-directed profiles, 14 bioactive compounds from classes of lipids, plant hormones, spices, and pesticides were identified. In particular, bioactive compounds coming from the lipid class were increased by gastrointestinal digestion, while spices and pesticides remained unaffected. With regard to food safety, the determination of the two dinitrophenol herbicides dinoterb and dinoseb in highly processed tomato products should be given special attention. The hyphenation covered a broad analyte spectrum and showed robust and reliable results.

摘要

当前的非目标食品筛选策略主要集中在已知的危险化学品(掺杂物、残留、污染物、包装迁移物等)上,而不是一般的生物活性成分,并且排除了生物效应检测。为了拓宽视野,引入了一种更积极的非目标效应导向策略来补充食品安全,以便不仅检测到已知的,而且还检测到未知的生物活性化合物。所开发的 10 维连接包括表面上的消化(1D)、平面色谱分离(2D)、使用白光的可视化(3D)、紫外光(4D)、荧光光(5D)、效应导向分析(6D)、心脏切割区洗脱到包括在线脱盐(7D)的正交反相色谱柱,随后进行二极管阵列检测(8D)、高分辨率质谱(9D)和碎片化(10D)。模拟并整合了每个样品的肠道消化,以研究化合物谱的任何变化。作为原理证明,通过非靶向模式,使用五种不同的平面测定法筛选了九种方便的番茄产品和一种新鲜制备的番茄汤。非消化和消化的样品并排比较。在其效应导向图谱中,从脂质类、植物激素、香料和农药类中鉴定出了 14 种生物活性化合物。特别是,来自脂质类的生物活性化合物在胃肠道消化过程中增加,而香料和农药则不受影响。就食品安全而言,应特别注意高度加工的番茄产品中二硝基苯酚类除草剂地乐特和地乐酚的测定。连接涵盖了广泛的分析物谱,显示出稳健可靠的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/680b/10766732/324f5577a2af/216_2023_4656_Fig1_HTML.jpg

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