School of Food Science and Engineering, Shaanxi University of Science and Technology, Xi'an 710021, China.
Institute for Global Food Security, School of Biological Sciences, Queen's University Belfast, Belfast BT95DL, United Kingdom.
Food Chem. 2025 Jan 1;462:140936. doi: 10.1016/j.foodchem.2024.140936. Epub 2024 Aug 22.
Aromatic amino acid oxidation products (AAAOPs) are newly discovered risk substances of thermal processes. Due to its significant polarity and trace level in food matrices, there are no efficient pre-treatment methods available to enrich AAAOPs. Herein, we proposed a magnetic cationic covalent organic framework (FeO@EB-iCOF) as an adsorbent for dispersive magnetic solid-phase extraction (DMSPE). Benefiting from the unique charged characteristics of FeO@EB-iCOF, AAAOPs can be enriched through electrostatic interaction and π-π interactions. Under the optimal DMSPE conditions, the combined HPLC-MS/MS method demonstrated good linearity (R ≥ 0.990) and a low detection limit (0.11-7.5 μg·kg) for AAAOPs. In addition, the method was applied to real sample and obtained satisfactory recoveries (86.8 % ∼ 109.9 %). Especially, we applied this method to the detection of AAAOPs in meat samples and conducted a preliminarily study on its formation rules, which provides a reliable basis for assessing potential dietary risks.
芳香族氨基酸氧化产物(AAAOPs)是新发现的热加工风险物质。由于其在食品基质中具有显著的极性和痕量水平,因此没有有效的预处理方法可用于富集 AAAOPs。在此,我们提出了一种磁性阳离子共价有机框架(FeO@EB-iCOF)作为分散固相萃取(DMSPE)的吸附剂。受益于 FeO@EB-iCOF 的独特带电特性,AAAOPs 可以通过静电相互作用和π-π相互作用进行富集。在最佳 DMSPE 条件下,组合 HPLC-MS/MS 方法对 AAAOPs 表现出良好的线性(R≥0.990)和低检测限(0.11-7.5μg·kg)。此外,该方法已应用于实际样品,并获得了令人满意的回收率(86.8%∼109.9%)。特别是,我们将该方法应用于肉样中 AAAOPs 的检测,并对其形成规律进行了初步研究,为评估潜在的膳食风险提供了可靠的依据。