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Immunological Investigations
A Journal of Molecular and Cellular Immunology
Volume 44, 2015 - Issue 5
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Original Articles

Comparison of an Enzyme-Linked Immunosorbent Assay with an Immunochromatographic Assay for Detection of Lincomycin in Milk and Honey

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Pages 438-450 | Received 01 Dec 2014, Accepted 14 Feb 2015, Published online: 24 Jun 2015

References

  • Abualhasan MN, Batrawi N, Sutcliffe OB, Zaid AN. (2012). A validated stability-indicating HPLC method for routine analysis of an injectable lincomycin and spectinomycin formulation. Sci Pharm, 80, 977–86
  • Burkin MA, Galvidis IA. (2010). Development of a competitive indirect ELISA for the determination of lincomycin in milk, eggs, and honey. J Agric Food Chem, 58, 9893–8
  • Chen X, Xu L, Ma W, et al. (2013). Development of an enzyme-linked immunosorbent assay for cyhalothrin. Immunol Invest, 42, 493–503
  • Chen XJ, Xu LG, Ma W, et al. (2014). General immunoassay for pyrethroids based on a monoclonal antibody. Food Agr Immunol, 25, 341–9
  • Chen YQ, Wang ZQ, Wang ZH, et al. (2008). Rapid enzyme-linked immunosorbent assay and colloidal gold immunoassay for kanamycin and tobramacin in swine tissues. J Agric Food Chem, 56, 2944–52
  • Dousa M, Sikac Z, Halama M, Lemr K. (2006). HPLC determination of lincomycin in premixes and feedstuffs with solid-phase extraction on HLB OASIS and LC-MS/MS confirmation. J Pharm Biomed Anal, 40, 981–6
  • Gaudin V, De Courville A, Hedou C, et al. (2013). Verdon, evaluation and validation of two microbiological tests for screening antibiotic residues in honey according to the European guideline for the validation of screening methods. Food Addit Contam Part A Chem Anal Control Expo Risk Assess, 30, 234–43
  • Gerasimova SS, Berezina EK. (1977). Cytomorphological study of lincomycin toxicity. Antibiotiki, 22, 539–44
  • Hu Y, Li G, Zhang Z. (2011). A flow injection chemiluminescence method for the determination of lincomycin in serum using a diperiodato-cuprate (III)-luminol system. Luminescence, 26, 313–18
  • Juan C, Molto JC, Manes J, Font G. (2010). Determination of macrolide and lincosamide antibiotics by pressurised liquid extraction and liquid chromatography-tandem mass spectrometry in meat and milk. Food Control, 21, 1703–9
  • Kamenik Z, Kopecky J, Mareckova M, et al. (2009). HPLC-fluorescence detection method for determination of key intermediates of the lincomycin biosynthesis in fermentation broth. Anal Bioanal Chem, 393, 1779–87
  • Kim E, Bahn K, Kang E, Kim M. (2012). Quantitative analysis of lincomycin and narasin in poultry, milk and eggs by liquid chromatography-tandem mass spectrometry. Food Chem, 132, 1063–70
  • Kowalski P, Konieczna L, Oledzka I, et al. (2014). Development and validation of electromigration technique for the determination of lincomycin and clindamycin residues in poultry tissues. Food Anal Meth, 7, 276–82
  • Li ZK, Zhu YY, Yin XG, et al. (2009). Development of an indirect enzyme-linked immunosorbent assay for the organophosphorus pesticide paraoxon-methyl. Immunol Invest, 38, 510–25
  • Liu L, Luo L, Suryoprabowo S, et al. (2014a). Development of an immunochromatographic strip test for rapid detection of ciprofloxacin in milk samples. Sensors (Basel, Switzerland), 14, 16785–98
  • Liu LQ, Xing CR, Yan HJ, et al. (2014b). Development of an ELISA and immunochromatographic strip for highly sensitive detection of microcystin-LR. Sensors, 14, 14672–85
  • Luo WH, Yin BZ, Ang CYM, et al. (1996). Determination of lincomycin residues in salmon tissues by gas chromatography with nitrogen-phosphorus detection. J Chromatogr B, 687, 405–11
  • Olsovska J, Jelinkova M, Man P, et al. (2007). Flieger, high-throughput quantification of lincomycin traces in fermentation broth of genetically modified Streptomyces spp. Comparison of ultra-performance liquid chromatography and high-performance liquid chromatography with UV detection. J Chromatogr A, 1139, 214–20
  • Peng J, Meng X, Deng X, et al. (2014a). Development of a monoclonal antibody-based sandwich ELISA for the detection of ovalbumin in foods. Food Agricult Immunol, 25, 1–8
  • Peng T, Yang WC, Lai WH, et al. (2014b). Improvement of the stability of immunochromatographic assay for the quantitative detection of clenbuterol in swine urine. Anal Method, 6, 7394–8
  • Pestka S. (1974). The use of inhibitors in studies of protein synthesis. Meth Enzymol, 30, 261–82
  • Shan GM, Stoutamire DW, Wengatz I, et al. (1999). Development of an immunoassay for the pyrethroid insecticide esfenvalerate. J Agric Food Chem, 47, 2145–55
  • Solliec M, Masse D, Sauve S. (2014). Analysis of trimethoprim, lincomycin, sulfadoxin and tylosin in swine manure using laser diode thermal desorption-atmospheric pressure chemical ionization-tandem mass spectrometry. Talanta, 128, 23–30
  • Sun FX, Liu LQ, Ma WW, et al. (2012). Kuang, Rapid on-site determination of melamine in raw milk by an immunochromatographic strip. Int J Food Sci Tech, 47, 1505–10
  • Suryoprabowo S, Liu L, Peng J, et al. (2014). Development of a broad specific monoclonal antibody for fluoroquinolone analysis. Food Anal Methods, 7, 2163–8
  • Tao Y, Chen D, Yu G, et al. (2011). Simultaneous determination of lincomycin and spectinomycin residues in animal tissues by gas chromatography-nitrogen phosphorus detection and gas chromatography-mass spectrometry with accelerated solvent extraction. Food Addit Contam Part A Chem Anal Control Expo Risk Assess, 28, 145–54
  • Venkataramana M, Navya K, Chandranayaka S, et al. (2014). Development and validation of an immunochromatographic assay for rapid detection of fumonisin B1 from cereal samples. J Food Sci Tech Mys, 51, 1920–8
  • Wang Y, Wang R, Wang J, et al. (2010). A sensitive and specific enzyme-linked immunosorbent assay for the detection of lincomycin in food samples. J Sci Food Agric, 90, 2083–9
  • Xing C, Feng M, Hao C, et al. (2013). Visual sensor for the detection of trace Cu (II) ions using an immunochromatographic strip. Immunol Invest, 42, 221–34
  • Yang CY, Zhang ZJ, Shi ZL. (2010). A novel chemiluminescence reaction system for the determination of lincomycin with diperiodatonickelate(IV). Microchim Acta, 168, 293–8
  • Zhao XC, You TY, Qiu HB, et al. (2004). Electrochemiluminescence detection with integrated indium tin oxide electrode on electrophoretic microchip for direct bioanalysis of lincomycin in the urine. J Chromatogr B Analyt Technol Biomed Life Sci, 810, 137–42
  • Zhou J, Zhu K, Xu F, et al. (2014). Development of a microsphere-based fluorescence immunochromatographic assay for monitoring lincomycin in milk, honey, beef, and swine urine. J Agric Food Chem, 62, 12061–6

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