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Original Articles

Rapid multi-class multi-residue method for the confirmation of chloramphenicol and eleven nitroimidazoles in milk and honey by liquid chromatography-tandem mass spectrometry (LC-MS)

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Pages 1233-1246 | Received 17 Feb 2010, Accepted 25 Apr 2010, Published online: 30 Jun 2010

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Lixia Yang, Zi Yi, Xike Zeng, Xiaobei Huang, Feifei Zhong, Jinsha Zhou & Zhipeng Qiu. (2022) Sensitive Fluorescent Determination of Chloramphenicol Based upon Graphdiyne and RecJf Exonuclease-Assisted Signal Amplification. Analytical Letters 55:18, pages 2817-2828.
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Irma E. A. Bongers, Milou G.M. van de Schans, Coen V.M. Nibbeling, Ingrid J.W. Elbers, Bjorn J.A. Berendsen & Tina Zuidema. (2021) A single method to analyse residues from five different classes of prohibited pharmacologically active substances in milk. Food Additives & Contaminants: Part A 38:10, pages 1717-1734.
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Wim Reybroeck. (2018) Residues of antibiotics and chemotherapeutics in honey. Journal of Apicultural Research 57:1, pages 97-112.
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Gerhard G. Rimkus & Dirk Hoffmann. (2017) Enantioselective analysis of chloramphenicol residues in honey samples by chiral LC-MS/MS and results of a honey survey. Food Additives & Contaminants: Part A 34:6, pages 950-961.
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Kamila Mitrowska, Andrzej Posyniak & Jan Zmudzki. (2014) Selective Determination of Fourteen Nitroimidazoles in Honey by High-Performance Liquid Chromatography–Tandem Mass Spectrometry. Analytical Letters 47:10, pages 1634-1649.
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Ryan Venable, Carion Haynes & Jo Marie Cook. (2014) Reported prevalence and quantitative LC-MS methods for the analysis of veterinary drug residues in honey: a review. Food Additives & Contaminants: Part A 31:4, pages 621-640.
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Rose Kibechu & Kwenga Sichilongo. (2012) A LIQUID CHROMATOGRAPHY MASS SPECTROMETRY METHOD FOR THE DETERMINATION OF SOME PHARMACOLOGICALLY ACTIVE SUBSTANCES VALIDATED USING MILK AS A MATRIX. Journal of Liquid Chromatography & Related Technologies 35:12, pages 1697-1711.
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Articles from other publishers (35)

A.O. Melekhin, V.V. Tolmacheva, N.O. Goncharov, V.V. Apyari, M.Yu. Parfenov, D.P. Bulkatov, S.G. Dmitrienko & Yu.A. Zolotov. (2024) Rapid multi-residue LC-MS/MS determination of nitrofuran metabolites, nitroimidazoles, amphenicols, and quinolones in honey with ultrasonic-assisted derivatization – magnetic solid-phase extraction. Journal of Pharmaceutical and Biomedical Analysis 237, pages 115764.
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Cristina Vercelli, Michela Amadori, Graziana Gambino & Giovanni Re. (2023) A review on the most frequently used methods to detect antibiotic residues in bovine raw milk. International Dairy Journal 144, pages 105695.
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Wanqin Yu, Jingwen Jia, Jinmei Shi, Hongmei Shi & Lixin Yang. (2023) Magnetic solid-phase extraction based on GO/Fe3O4 coupled with UPLC-MS/MS for determining nitroimidazoles and their metabolites in honey. Talanta 254, pages 124181.
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Kateryna Plotnikova, Liliya Dubenska, Petro Rydchuk, Solomiya Pysarevska, Mariana Rydchuk, Sophia Ivakh, Dmytro Yanovych, Zvenyslava Zasadna & Serhiy Plotycya. (2021) Voltammetric determination of 5-nitroimidazole derivatives in honey and HPLC-MS/MS confirmation. Journal of Food Measurement and Characterization 16:1, pages 891-900.
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Ewelina Patyra & Krzysztof Kwiatek. (2020) Quantification and Analysis of Trace Levels of Phenicols in Feed by Liquid Chromatography–Mass Spectrometry. Chromatographia 83:6, pages 715-723.
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Rosa Elvira Gavilán, Carolina Nebot, Ewelina Patyra, Beatriz Vazquez, Jose Manuel Miranda & Alberto Cepeda. (2019) Determination of Florfenicol, Thiamfenicol and Chloramfenicol at Trace Levels in Animal Feed by HPLC–MS/MS. Antibiotics 8:2, pages 59.
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Xiaowei Li, Yuebin Ke, Yingyu Wang, Chengfei Wang, Dongyang Ye, Xue Hu, Lan Zhou & Xi Xia. (2018) Confirmatory Analysis of Nitroimidazoles and Hydroxy Metabolites in Honey by Dispersive-Solid Phase Extraction and Ultra-High Performance Liquid Chromatography-Tandem Mass Spectrometry. Molecules 23:12, pages 3350.
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Maykel Hernández-Mesa, Ana M. García-Campaña & Carmen Cruces-Blanco. (2018) Development and validation of a QuEChERS method for the analysis of 5-nitroimidazole traces in infant milk-based samples by ultra-high performance liquid chromatography-tandem mass spectrometry. Journal of Chromatography A 1562, pages 36-46.
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V. G. Amelin, N. M. Fedina, I. V. Podkolzin & A. I. Korotkov. (2018) Rapid Screening and Determination of Residual Veterinary Drugs in Milk by Ultrahigh Performance Liquid Chromatography–High-Resolution Quadrupole Time-of-Flight Mass Spectrometry. Journal of Analytical Chemistry 73:6, pages 576-585.
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Maykel Hernández-Mesa, Carmen Cruces-Blanco & Ana M. García-Campaña. (2018) Simple and rapid determination of 5-nitroimidazoles and metabolites in fish roe samples by salting-out assisted liquid-liquid extraction and UHPLC-MS/MS. Food Chemistry 252, pages 294-302.
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Maykel Hernández-Mesa, Laura Carbonell-Rozas, Carmen Cruces-Blanco & Ana M. García-Campaña. (2017) A high-throughput UHPLC method for the analysis of 5-nitroimidazole residues in milk based on salting-out assisted liquid–liquid extraction. Journal of Chromatography B 1068-1069, pages 125-130.
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Xiu-Chun Guo, Zhao-Yang Xia, Hai-Hui Wang, Wen-Yi Kang, Li-Ming Lin, Wen-Qing Cao, Hong-Wei Zhang & Wen-Hui Zhou. (2017) Molecularly imprinted solid phase extraction method for simultaneous determination of seven nitroimidazoles from honey by HPLC-MS/MS. Talanta 166, pages 101-108.
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Yue Jin, Jinzhen Zhang, Wen Zhao, Wenwen Zhang, Lin Wang, Jinhui Zhou & Yi Li. (2017) Development and validation of a multiclass method for the quantification of veterinary drug residues in honey and royal jelly by liquid chromatography–tandem mass spectrometry. Food Chemistry 221, pages 1298-1307.
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Kamila Mitrowska & Maja Antczak. (2017) Development and validation of a liquid chromatography with tandem mass spectrometry method for the determination of nitroimidazole residues in beeswax. Journal of Separation Science 40:5, pages 1158-1166.
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Letícia R. Guidi, Patrícia A.S. Tette, Christian Fernandes, Luiza H.M. Silva & Maria Beatriz A. Gloria. (2017) Advances on the chromatographic determination of amphenicols in food. Talanta 162, pages 324-338.
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Els Daeseleire, Els Van Pamel, Christof Van Poucke & Siska Croubels. 2017. Chemical Contaminants and Residues in Food. Chemical Contaminants and Residues in Food 117 153 .
Meng Chen, Ning Gan, Huairong Zhang, Zhongdan Yan, Tianhua Li, Yinji Chen, Qing Xu & Qianli Jiang. (2016) Electrochemical simultaneous assay of chloramphenicol and PCB72 using magnetic and aptamer-modified quantum dot-encoded dendritic nanotracers for signal amplification. Microchimica Acta 183:3, pages 1099-1106.
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Ning Liang, Peiting Huang, Xiaohong Hou, Zhen Li, Lei Tao & Longshan Zhao. (2016) Solid-phase extraction in combination with dispersive liquid-liquid microextraction and ultra-high performance liquid chromatography-tandem mass spectrometry analysis: the ultra-trace determination of 10 antibiotics in water samples. Analytical and Bioanalytical Chemistry 408:6, pages 1701-1713.
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Amr H. Shendy, Medhat A. Al-Ghobashy, Sohair A. Gad Alla & Hayam M. Lotfy. (2016) Development and validation of a modified QuEChERS protocol coupled to LC–MS/MS for simultaneous determination of multi-class antibiotic residues in honey. Food Chemistry 190, pages 982-989.
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Maykel Hernández-Mesa, Francisco J. Lara, Carmen Cruces-Blanco & Ana M. García-Campaña. (2015) Determination of 5-nitroimidazole residues in milk by capillary electrochromatography with packed C18 silica beds. Talanta 144, pages 542-550.
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Tomasz Sniegocki, Malgorzata Gbylik-Sikorska & Andrzej Posyniak. (2015) Transfer of chloramphenicol from milk to commercial dairy products – Experimental proof. Food Control 57, pages 411-418.
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A. Rúbies, G. Sans, P. Kumar, M. Granados, R. Companyó & F. Centrich. (2015) High-throughput method for the determination of nitroimidazoles in muscle samples by liquid chromatography coupled to mass spectrometry. Analytical and Bioanalytical Chemistry 407:15, pages 4411-4421.
Crossref
A. Kaufmann, P. Butcher, K. Maden, S. Walker & M. Widmer. (2015) Determination of nitrofuran and chloramphenicol residues by high resolution mass spectrometry versus tandem quadrupole mass spectrometry. Analytica Chimica Acta 862, pages 41-52.
Crossref
Kees Olieman. (2014) Zero tolerance versus zero risk. Food Security 6:6, pages 897-902.
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Yuran Cao, Miao Zhao, Xiaojie Wu, Beining Guo, Yuancheng Chen, Jicheng Yu, Guoying Cao, Jing Zhang, Yaoguo Shi & Yingyuan Zhang. (2014) Quantification of levornidazole and its metabolites in human plasma and urine by ultra-performance liquid chromatography–mass spectrometry. Journal of Chromatography B 963, pages 119-127.
Crossref
Anna Gadaj, Valentina di Lullo, Helen Cantwell, Martin McCormack, Ambrose Furey & Martin Danaher. (2014) Determination of nitroimidazole residues in aquaculture tissue using ultra high performance liquid chromatography coupled to tandem mass spectrometry. Journal of Chromatography B 960, pages 105-115.
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Maykel Hernández-Mesa, Diego Airado-Rodríguez, Carmen Cruces-Blanco & Ana M. García-Campaña. (2014) Novel cation selective exhaustive injection-sweeping procedure for 5-nitroimidazole determination in waters by micellar electrokinetic chromatography using dispersive liquid–liquid microextraction. Journal of Chromatography A 1341, pages 65-72.
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Maykel Hernández-Mesa, Ana M. García-Campaña & Carmen Cruces-Blanco. (2014) Novel solid phase extraction method for the analysis of 5-nitroimidazoles and metabolites in milk samples by capillary electrophoresis. Food Chemistry 145, pages 161-167.
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María del Carmen Mena & Juan Pablo Albar. 2013. Foodomics. Foodomics 15 67 .
Rocío Barreiro, Mónica Díaz-Bao, Patricia Regal, José M. Miranda & Alberto Cepeda. (2013) Development of a HPLC-MS/MS confirmatory method for the simultaneous determination of amphenicols in baby formulas using molecularly imprinted polymers. Analytical Methods 5:16, pages 3970.
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Wenli Tian, Lingyu Gao, Yazhou Zhao, Wenjun Peng & Zhongzhou Chen. (2013) Simultaneous determination of metronidazole, chloramphenicol and 10 sulfonamide residues in honey by LC–MS/MS. Analytical Methods 5:5, pages 1283.
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Maykel Hernández-Mesa, Carmen Cruces-Blanco & Ana M. García-Campaña. (2012) Determination of 5-nitroimidazoles and metabolites in environmental samples by micellar electrokinetic chromatography. Analytical and Bioanalytical Chemistry 404:2, pages 297-305.
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Élida Alechaga, Encarnación Moyano & M. Teresa Galceran. (2012) Ultra-high performance liquid chromatography-tandem mass spectrometry for the analysis of phenicol drugs and florfenicol-amine in foods. The Analyst 137:10, pages 2486.
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Pu Su, Nan Liu, Maoxiang Zhu, Baoan Ning, Ming Liu, Zhihua Yang, Xiujie Pan & Zhixian Gao. (2011) Simultaneous detection of five antibiotics in milk by high-throughput suspension array technology. Talanta 85:2, pages 1160-1165.
Crossref
. (2010) Current literature in mass spectrometry. Journal of Mass Spectrometry 45:12, pages 1483-1494.
Crossref

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