Xiao Liang, Haifeng Wei, Xiantao Zeng, Yan Zhang, Cheng Rui, Mingyue Shen, Fan Liu, Lan Guo, Yiqun Wan
Prepared dishes, one of the prominent modern foods, carry the risk of alternaria toxins (ATs) contamination. To address this concern, an efficient dispersed solid-phase extraction (d-SPE) method based on MIL-101(Fe) coupled with ultra-high performance liquid chromatography-tandem mass spectrometry (UHPLC-MS/MS) method was developed for the analysis of six ATs in prepared dishes. Characterization results confirmed that the synthesized MIL-101(Fe) possesses a high specific surface area and appropriate pore sizes distribution. Furthermore, computational simulations revealed that ATs could be efficiently absorbed and purified by MIL-101(Fe) via hydrogen bonding, π-π stacking, and Lewis acid-base interactions. Under optimized conditions, the method exhibited excellent linearity (R2 ≥ 0.9990), and the limit of quantifications (LOQs) ranging from 0.07 to 0.37 μg/L, with recoveries in the range of 76.2%-108.3% and relative standard deviations (RSDs) below 9.8%. this study aims to bridge this gap by utilizing UHPLC-MS/MS to develop a robust method for the high-sensitivity and high-accuracy quantification of ATs in prepared dishes. Furthermore, the adsorption mechanism of MIL-101(Fe) for target toxins was elucidated by grand canonical Monte Carlo (GCMC) simulation and Density Functional Theory (DFT) calculation.