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Original Articles

Simultaneous determination of chloramphenicol and florfenicol in liquid milk, milk powder and bovine muscle by LC–MS/MS

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Pages 559-570 | Received 29 Nov 2010, Accepted 08 Nov 2011, Published online: 12 Jan 2012

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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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Dermot Faulkner, Margaret Cantley, Matthew Walker, Steven Crooks, David Kennedy & Christopher Elliott. (2016) Evidence of non-extractable florfenicol residues: development and validation of a confirmatory method for total florfenicol content in kidney by UPLC-MS/MS. Food Additives & Contaminants: Part A 33:6, pages 983-994.
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Qing Wang, Hua Zhao, Cunxian Xi, Guomin Wang, Dongdong Chen & Shijia Ding. (2014) Determination of chloramphenicol and zeranols in pig muscle by immunoaffinity column clean-up and LC-MS/MS analysis. Food Additives & Contaminants: Part A 31:7, pages 1177-1186.
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Xiaoqi Tao, Haiyang Jiang, Xuezhi Yu, Jinghui Zhu, Xia Wang, Zhanhui Wang, Lanlan Niu, Xiaoping Wu & Jianzhong Shen. (2013) Simultaneous determination of chloramphenicol, florfenicol and florfenicol amine in ham sausage with a hybrid chemiluminescent immunoassay. Food Additives & Contaminants: Part A 30:5, pages 804-812.
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Yue Kong, Xiaolin Fan, Xun Yao, Kang Wu, Anping Deng, Xinjian Feng & Jianguo Li. (2023) Potential-Resolved Electrochemiluminescence Multiplex Immunoassay for Florfenicol and Chloramphenicol in a Single Sample. Analytical Chemistry 95:45, pages 16639-16648.
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Dermot V. Faulkner, Margaret L. Cantley, David G. Kennedy, Christopher T. Elliott & Steven R.H. Crooks. (2022) MRM3-based UHPLC-MS/MS method for quantitation of total florfenicol residue content in milk and withdrawal study profile of milk from treated cows. Food Chemistry 379, pages 132070.
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Arzu YAVUZ, İsmail AZAR, Ali ÖZCAN & Niyazi ÜLKÜ. (2021) A MULTICLASS METHOD FOR THE ANALYSIS OF ANTIBIOTIC RESIDUES IN MILK POWDER AND WHEY POWDER BY UPLC-MS/MSSÜT TOZU VE PEYNİRALTI SUYU TOZUNDA ANTİBİYOTİK KALINTILARININ UPLC-MS/MS İLE ANALİZİNDE ÇOKLU GRUP YÖNTEMİ. Gıda 47:1, pages 25-33.
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Jadranka Miletić Vukajlović & Tanja Panić-Janković. 2021. Mass Spectrometry in Life Sciences and Clinical Laboratory. Mass Spectrometry in Life Sciences and Clinical Laboratory.
DanNa Zhou, YaChao Li, LingLi Huang, MingRong Qian, Dong Li, GuiZhi Sun & Bo Yang. (2020) A reliable and cost-efficient TLC-HPLC method for determining total florfenicol residues in porcine edible tissues. Food Chemistry 303, pages 125399.
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Ningge Jian, Ruixian Li, Jian Li, Sihui Liang, Qian Xu & Chunmin Wang. (2019) Simple, efficient, and eco‐friendly sample preparation for simultaneous determination of paracetamol and chloramphenicol in meat. Journal of Separation Science 42:16, pages 2696-2705.
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Tomasz Śniegocki, Bartosz Sell, Marta Giergiel & Andrzej Posyniak. (2019) QuEChERS and HPLC-MS/MS Combination for the Determination of Chloramphenicol in Twenty Two Different Matrices. Molecules 24:3, pages 384.
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Abdulrasaq O. Oyedeji, Titus A.M. Msagati, Akan B. Williams & Nsikak U. Benson. (2019) Determination of antibiotic residues in frozen poultry by a solid-phase dispersion method using liquid chromatography-triple quadrupole mass spectrometry. Toxicology Reports 6, pages 951-956.
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Shangshu Wang, Jianfeng Zhang, Chenyu Li & Ligang Chen. (2018) Analysis of tetracyclines from milk powder by molecularly imprinted solid-phase dispersion based on a metal-organic framework followed by ultra high performance liquid chromatography with tandem mass spectrometry. Journal of Separation Science 41:12, pages 2604-2612.
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Tomasz Śniegocki, Małgorzata Gbylik-Sikorska & Andrzej Posyniak. (2017) Analytical strategy for determination of chloramphenicol in different biological matrices by liquid chromatography - mass spectrometry. Journal of Veterinary Research 61:3, pages 321-327.
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M.E. León-González & N. Rosales-Conrado. (2017) Determination of ibuprofen enantiomers in breast milk using vortex-assisted matrix solid-phase dispersion and direct chiral liquid chromatography. Journal of Chromatography A 1514, pages 88-94.
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Tomiaki MINATANI, Yuka SAKAMOTO, Hiroyuki NAGAI & Kotaro GOTO. (2017) Determination of Residues of Phenicol Drugs in Ayu (<i>Plecoglossus altivelis</i>) by LC-MS/MS. Food Hygiene and Safety Science (Shokuhin Eiseigaku Zasshi) 58:3, pages 143-148.
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Lingling An, Yulian Wang, Yuanhu Pan, Yanfei Tao, Dongmei Chen, Zhenli Liu, Wenxiang Yang, Dapeng Peng & Zonghui Yuan. (2016) Development and Validation of a Sensitive Indirect Competitive Enzyme-Linked Immunosorbent Assay for the Screening of Florfenicol and Thiamphenicol in Edible Animal Tissue and Feed. Food Analytical Methods 9:9, pages 2434-2443.
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Fabiano Barreto, Cristina Ribeiro, Rodrigo Barcellos Hoff & Teresa Dalla Costa. (2016) Determination of chloramphenicol, thiamphenicol, florfenicol and florfenicol amine in poultry, swine, bovine and fish by liquid chromatography-tandem mass spectrometry. Journal of Chromatography A 1449, pages 48-53.
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Victoria Samanidou, Maria Kehagia, Abuzar Kabir & Kenneth G. Furton. (2016) Matrix molecularly imprinted mesoporous sol–gel sorbent for efficient solid-phase extraction of chloramphenicol from milk. Analytica Chimica Acta 914, pages 62-74.
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Armin Fashi, Fatemeh Khanban, Mohammad Reza Yaftian & Abbasali Zamani. (2016) Improved electromembrane microextraction efficiency of chloramphenicol in dairy products: the cooperation of reduced graphene oxide and a cationic surfactant. RSC Advances 6:114, pages 112748-112755.
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Victoria Samanidou, Lavrentis-Demetrios Galanopoulos, Abuzar Kabir & Kenneth G. Furton. (2015) Fast extraction of amphenicols residues from raw milk using novel fabric phase sorptive extraction followed by high-performance liquid chromatography-diode array detection. Analytica Chimica Acta 855, pages 41-50.
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Kwenga Sichilongo, Prince Kolanyane, Ofentse Mazimba & Ishmael B. Masesane. (2014) ESI behavior of thiamphenicol and florfenicol in methanol and tetrahydrofuran solutions for LC–MS. International Journal of Mass Spectrometry 367, pages 43-49.
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Xiaoqi Tao, Jianzhong Shen, Xingyuan Cao, Zhanhui Wang, Xiaoping Wu & Haiyang Jiang. (2014) Simultaneous determination of chloramphenicol and clenbuterol in milk with hybrid chemiluminescence immunoassays. Analytical Methods 6:4, pages 1021.
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Xiaoqi Tao, Zhifei He, Xingyuan Cao, Jianzhong Shen & Hongjun Li. (2014) Development of a highly sensitive real-time immuno-PCR for the measurement of chloramphenicol in milk based on magnetic bead capturing. Anal. Methods 6:23, pages 9340-9347.
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Élida Alechaga, Encarnación Moyano & M. Teresa Galceran. (2013) Atmospheric pressure ionization–tandem mass spectrometry of the phenicol drug family. Journal of Mass Spectrometry 48:11, pages 1241-1251.
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Xiaoqi Tao, Haiyang Jiang, Xuezhi Yu, Jinghui Zhu, Xia Wang, Zhanhui Wang, Lanlan Niu, Xiaoping Wu & Jianzhong Shen. (2013) An ultrasensitive chemiluminescence immunoassay of chloramphenicol based on gold nanoparticles and magnetic beads. Drug Testing and Analysis 5:5, pages 346-352.
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Yun Zou, Jian Zhao, Jinzhong Zhang, Guomin Wang, Bobin Tang, Xianliang Li & Lei Zhang. (2013) Matrix effects in the simultaneous determination of fenicol antibiotics in swine muscle and casings by ultra performance liquid chromatography-tandem mass spectrometry. Analytical Methods 5:20, pages 5662.
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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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