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一种用于快速检测咖啡掺假的流动注射分析-质谱方法:与非靶向液相色谱-质谱方法的比较研究

An FIA-MS Method for Rapid Coffee Adulteration Detection: A Comparative Study with a Non-Targeted LC-MS Approach.

作者信息

Núñez Nerea, Saurina Javier, Núñez Oscar

机构信息

Department of Chemical Engineering and Analytical Chemistry, University of Barcelona, Martí i Franquès 1-11, E08028 Barcelona, Spain.

Research Institute in Food Nutrition and Food Safety, University of Barcelona, Recinte Torribera, Av. Prat de la Riba 171, Edifici de Recerca (Gaudí), Santa Coloma de Gramenet, E08921 Barcelona, Spain.

出版信息

Foods. 2025 Aug 22;14(17):2931. doi: 10.3390/foods14172931.

Abstract

Coffee adulteration is a growing concern in the food industry due to economic and quality implications. This study evaluates a rapid, non-targeted fingerprinting method based on flow injection analysis-mass spectrometry (FIA-MS) for detecting common coffee adulterants. A total of 119 samples were analyzed, including 43 coffee samples and 76 samples of common coffee adulterants (16 chicory, 10 barley, and 50 flour samples). FIA-MS combined with chemometric analysis allowed for the classification of pure and adulterated coffee samples with over 95% accuracy. Compared to LC-MS, the FIA-MS method showed a similar performance while offering significantly faster analysis and lower solvent consumption, making it a practical and sustainable option for high-throughput screening. For PLS regression studies, calibration and prediction errors were consistently below 0.91% and 11.7%, respectively. Furthermore, the methodology was compared with a non-targeted LC-MS approach, showing an excellent performance.

摘要

由于经济和质量方面的影响,咖啡掺假问题在食品行业中日益受到关注。本研究评估了一种基于流动注射分析-质谱联用(FIA-MS)的快速、非靶向指纹图谱方法,用于检测常见的咖啡掺假物。共分析了119个样品,包括43个咖啡样品和76个常见咖啡掺假物样品(16个菊苣、10个大麦和50个面粉样品)。FIA-MS与化学计量学分析相结合,能够以超过95%的准确率对纯咖啡样品和掺假咖啡样品进行分类。与液相色谱-质谱联用(LC-MS)相比,FIA-MS方法表现出相似的性能,同时分析速度明显更快,溶剂消耗更低,使其成为高通量筛选的实用且可持续的选择。对于偏最小二乘回归研究,校准误差和预测误差分别始终低于0.91%和11.7%。此外,该方法与非靶向LC-MS方法进行了比较,表现出色。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ab0/12427724/cec4ccb9d9fb/foods-14-02931-g001.jpg

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