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1.
Food Chem ; 444: 138643, 2024 Jun 30.
Article in English | MEDLINE | ID: mdl-38340504

ABSTRACT

This work provided an accurate analytical method to perform a multitarget analysis of a variety of antimicrobials (AMs) including sulfonamides, tetracyclines, macrolides, fluoroquinolones and quinolones, one imidazole and one nitroimidazole, one triazole, one diaminopyridine and one derivative of Penicillium stoloniferum in vegetables. The analysis is performed using liquid-chromatography coupled to a low-resolution triple quadrupole mass spectrometer (UHPLC-MS/MS) to detect the target analytesor coupled to a high-resolution q-Orbitrap (HRMS) to monitor the formed transformation products (TPs). Both instruments were compared in terms of limits of quantification and matrix effect at the detection. The method was applied to determine the presence of AMs in organic and non-organic vegetables, where sulfadiazine and mycophenolic acid were detected. On the other hand, the transference of four AMs (trimethoprim, sulfamethazine, enrofloxacin, and chlortetracycline) from soils to lettuces was evaluated through controlled uptake experiments. The choice of AMs was based on the classification into different families, and on the fact that those AM families are the most frequently detected in the environment. In this case, each of the AMs with which the soils were contaminated were found in the exposed lettuces. Moreover, in both studies, specific TPs of the AMs were identified, posing the necessity of assessing their effects in relation to food and human safety.


Subject(s)
Tandem Mass Spectrometry , Vegetables , Humans , Tandem Mass Spectrometry/methods , Vegetables/chemistry , Chromatography, Liquid/methods , Anti-Bacterial Agents , Soil , Chromatography, High Pressure Liquid/methods
2.
Talanta ; 254: 124192, 2023 Mar 01.
Article in English | MEDLINE | ID: mdl-36527910

ABSTRACT

The extensive use of antibiotics in agriculture has led to the occurrence of residual drugs in different vegetables frequently consumed by humans. This could pose a potential threat to human health, not only because of the possible effects after ingestion but also because the transmission of antibiotic-resistant genes could occur. In this work, two accurate sample preparation procedures were developed and validated for the simultaneous analysis of sulfonamides (SAs) and tetracyclines (TCs) in four of the most widely consumed vegetables (lettuce, onion, tomato, and carrot) in Europe. The evaluated protocols were based on QuECHERS for extraction and subsequent clean-up by SPE (solid phase extraction) or dispersive SPE. Parameters affecting both extraction and clean-up were carefully evaluated and selected for accuracy of results and minimal matrix effect. Overall, apparent recoveries were above 70% for most of the target analytes with both analytical procedures, and adequate precision (RSD<30%) was obtained for all the matrices. The procedural limits of quantification (LOQPRO) values for SPE clean-up remained below 4.4 µg kg-1 for TCs in all vegetables except for chlortetracycline (CTC) in lettuce (11.3 µg kg-1) and 3.0 µg kg-1 for SAs, with the exception of sulfadiazine (SDZ) in onion (3.9 µg kg-1) and sulfathiazole (STZ) in carrot (5.0 µg kg-1). Lower LOQPRO values (0.1-3.7 µg kg-1) were obtained, in general, when dSPE clean-up was employed. Both methods were applied to twenty-five market vegetable samples from ecological and conventional agriculture and only sulfamethazine (SMZ) and sulfapyridine (SPD) were detected in lettuce at 1.2 µg kg-1 and 0.5 µg kg-1, respectively.


Subject(s)
Sulfonamides , Vegetables , Humans , Sulfonamides/analysis , Tetracyclines/analysis , Anti-Bacterial Agents/analysis , Sulfanilamide/analysis , Lactuca , Onions , Solid Phase Extraction/methods , Chromatography, High Pressure Liquid/methods
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