Recent advances in the application of direct analysis in real time-mass spectrometry (DART-MS) in food analysis

被引:10
作者
Wang, Yang [1 ]
机构
[1] Changchun Univ Chinese Med, Jilin Ginseng Acad, Changchun 130117, Peoples R China
关键词
Direct analysis in real time; Mass spectrometry; Contamination detection; Food authentication and traceability; Advantages and limitations; IONIZATION MECHANISM; RAPID ANALYSIS; QUANTIFICATION; AUTHENTICITY; PESTICIDES; IDENTIFICATION; MICROPLASTICS; ADULTERANTS; MATRICES; FRUIT;
D O I
10.1016/j.foodres.2024.114488
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Direct analysis in real time-mass spectrometry (DART-MS) has evolved as an effective analytical technique for the rapid and accurate analysis of food samples. The current advancements of DART-MS in food analysis are described in this paper. We discussed the DART principles, which include devices, ionization mechanisms, and parameter settings. Numerous applications of DART-MS in the fields of food and food products analysis published during 2018 -2023 were reviewed, including contamination detection, food authentication and traceability, and specific analyte analysis in the food matrix. Furthermore, the challenges and limitations of DART-MS, such as matrix effect, isobaric component analysis, cost considerations and accessibility, and compound selectivity and identification, were discussed as well.
引用
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页数:10
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共 81 条
[1]   Rapid fingerprinting of sterols and related compounds in vegetable and animal oils and phytosterol enriched- margarines by transmission mode direct analysis in real time mass spectrometry [J].
Alberici, Rosana M. ;
Fernandes, Gabriel D. ;
Porcari, Andreia M. ;
Eberlin, Marcos N. ;
Barrera-Arellano, Daniel ;
Fernandez, Facundo M. .
FOOD CHEMISTRY, 2016, 211 :661-668
[2]   Rapid headspace solid-phase microextraction sheets with direct analysis in real time mass spectrometry (SPMESH-DART-MS) of derivatized volatile phenols in grape juices and wines [J].
Bates, Terry L. ;
Sacks, Gavin L. .
ANALYTICA CHIMICA ACTA, 2023, 1275
[3]   Non-visible print set-off of photoinitiators in food packaging: detection by ambient ionisation mass spectrometry [J].
Bentayeb, K. ;
Ackerman, L. K. ;
Lord, T. ;
Begley, T. H. .
FOOD ADDITIVES AND CONTAMINANTS PART A-CHEMISTRY ANALYSIS CONTROL EXPOSURE & RISK ASSESSMENT, 2013, 30 (04) :750-759
[4]   The current and potential applications of Ambient Mass Spectrometry in detecting food fraud [J].
Black, Connor ;
Chevallier, Olivier P. ;
Elliott, Christopher T. .
TRAC-TRENDS IN ANALYTICAL CHEMISTRY, 2016, 82 :268-278
[5]   Nanofibers mat as sampling module of direct analysis in real time mass spectrometry for sensitive and high-throughput screening of illegally adulterated sulfonylureas in antidiabetic health-care teas [J].
Cao, Jiankun ;
Jiang, Qing ;
Li, Ruixian ;
Xu, Qian ;
Li, Hongli .
TALANTA, 2019, 204 :753-761
[6]   Carbon-carbon double bond position elucidation in fatty acids using ozone-coupled direct analysis in real time mass spectrometry [J].
Cetraro, Nicolas ;
Cody, Robert B. ;
Yew, Joanne Y. .
ANALYST, 2019, 144 (19) :5848-5855
[7]   DART-MS Facilitated Quantification of Cannabinoids in Complex Edible Matrices-Focus on Chocolates and Gelatin-Based Fruit Candies [J].
Chambers, Megan I. ;
Garosi, Benedetta ;
Musah, Rabi A. .
ACS OMEGA, 2023, 8 (16) :14459-14469
[8]   Microplastics as contaminants in the marine environment: A review [J].
Cole, Matthew ;
Lindeque, Pennie ;
Halsband, Claudia ;
Galloway, Tamara S. .
MARINE POLLUTION BULLETIN, 2011, 62 (12) :2588-2597
[9]   Evaluating a direct swabbing method for screening pesticides on fruit and vegetable surfaces using direct analysis in real time (DART) coupled to an Exactive benchtop orbitrap mass spectrometer [J].
Crawford, Elizabeth ;
Musselman, Brian .
ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 2012, 403 (10) :2807-2812
[10]   Critical evaluation of ambient mass spectrometry coupled with chemometrics for the early detection of adulteration scenarios in Origanum vulgare L [J].
Damiani, Tito ;
Dreolin, Nicola ;
Stead, Sara ;
Dall'Asta, Chiara .
TALANTA, 2021, 227