참고문헌
- Andrea, D., J. Muller, and B. Hock. 1999. Stabilization of enzyme immunoassays for atrazine. Anal. Chim. Acta 362: 35-45 https://doi.org/10.1016/S0003-2670(97)00607-7
- Cho, Y. J., D. H. Lee, D. O. Kim, W. K. Min, K. T. Bong, G. G. Lee, and J. H. Seo. 2005. Production of a monoclonal antibody against ochratoxin A and its application to immunochromatographic assay. J. Agric. Food Chem. 53: 8447-8451 https://doi.org/10.1021/jf051681q
- Domijan, A. M., M. Peraica, Z. Jurjevic, D. Ivic, and B. Cvjetkovic. 2005. Fumonisin B1, fumonisin B2, zearalenone and ochratoxin A contamination of maize in Croatia. Food Addit. Contam. 22: 677-680 https://doi.org/10.1080/02652030500132927
- European Commission. 2002. Commission Directive 2002/26/ EC of 13 March 2002 laying down the sampling methods and the methods of analysis for the official control of the levels of ochratoxin A in foodstuffs. Off. J. Eur. Commun. L 75: 38-43
- European Commission. 2006. Commission Regulation 1881/2006 of 19 December 2006 setting maximum levels for certain contaminants in foodstuffs. Off. J. Eur. Union L 364: 5-24
- Frens, G. 1973. Preparation of gold dispersions of varying particle size: Controlled nucleation for the regulation of the particle size in monodisperse gold suspension. Nat. Phys. Sci. 241: 20-22 https://doi.org/10.1038/physci241020a0
- Galfre, G., S. C. Howe, C. Milstein, G. W. Butcher, and J. C. Howard. 1977. Antibodies to major histocompatability antigens produced by hybrid cell lines. Nature 266: 550-552 https://doi.org/10.1038/266550a0
- IARC (International Agency for Research on Cancer). 2002. Monographs on the evaluation of carcinogenic risk to human, pp. 169-366. In: Some Traditional Medicenes, Some Mycotoxins, Naphthalene and Styrene. International Agency for Research on Cancer, Lyon
- Jin, Y., J. W. Jang, M. H. Lee, and C. H. Han. 2006. Development of ELISA and immunochromatographic assay for the detection of neomycin. Clin. Chim. Acta 364: 260-266 https://doi.org/10.1016/j.cca.2005.07.024
- Kaur, J., K. V. Singh, R. Boro, K. R. Thampi, M. Raje, G. C. Varshney, and C. R. Suri. 2007. Immunochromatographic dipstick assay format using gold nanoparticles labeled protein-hapten conjugate for the detection of atrazine. Environ. Sci. Technol. 41: 5028-5036 https://doi.org/10.1021/es070194j
- Kawamura, O., S. Sato, H. Kajii, S. Nagayama, K. Ohtani, J. Chiba, and Y. Ueno. 1989. A sensitive enzyme-linked immunosorbent assay of ochratoxin A based on monoclonal antibodies. Toxicon 27: 887-897 https://doi.org/10.1016/0041-0101(89)90100-1
- Kolosova, A. Y., S. De Saeger, L. Sibanda, R. Verheijen, and V. Van Peteghem. 2007. Development of a colloidal gold-based lateral-flow immunoassay for the rapid simultaneous detection of zearalenone and deoxynivalenol. Anal. Bioanal. Chem. 389: 2103-2107 https://doi.org/10.1007/s00216-007-1642-z
- Kolosova, A. Y., W. B. Shim, Z. Y. Yang, S. A. Eremin, and D. H. Chung. 2006. Direct competitive ELISA based on a monoclonal antibody for detection of aflatoxin B1. Stabilization of ELISA kit components and application to grain samples. Anal. Bioanal Chem. 384: 286-294 https://doi.org/10.1007/s00216-005-0103-9
- Lattanzio, V. M., M. Solfrizzo, S. Powers, and A. Visconti. 2007. Simultaneous determination of aflatoxins, ochratoxin A and Fusarium toxins in maize by liquid chromatography/tandem mass spectrometry after multitoxin immunoaffinity cleanup. Rapid Commun. Mass Spectrom. 21: 3253-3261 https://doi.org/10.1002/rcm.3210
- Li, J., Y. Yu, M. Tian, H. Wang, F. Wei, L. Li, and X. Wang. 2006. Simultaneous determination of aflatoxins, zearalenone and ochratoxin A in cereal grains by immunoaffinity column and high performance liquid chromatography coupled with post-column photochemical derivatization. Se Pu 24: 581-584
- Liu, R., Z. Yu, Q. He, and Y. Xu. An immunoassay for ochratoxin A without the mycotoxin. Food Control 18: 872-877 https://doi.org/10.1016/j.foodcont.2006.05.002
- Maragos, C. M. and E. K. Kim. 2004. Detection of zearalenone and related metabolites by fluorescence polarization immunoassay. J. Food Prot. 67: 1039-1047
- Ngundi, M. M., L. C. Shirve-Lake, M. H. Moore, F. S. Ligler, and C. R. Taitt. 2006. Multiplexed detection of mycotoxins in foods with a regenerable array. J. Food Prot. 69: 3047-3051 https://doi.org/10.4315/0362-028X-69.12.3047
- Rosa, C. A. R., C. E. Magnoli, M. E. Fraga, A. M. Dalcero, and M. N. Santana. 2004. Occurrence of ochratoxin A in wine and grape juice marketed in Rio de Janeiro, Brazil. Food Addit. Contam. 21: 358-364 https://doi.org/10.1080/02652030310001639549
- Roth, J. 1982. Applications of immunocolloids in light microscopy: Preparation of protein A-silver and protein A-gold complexes and their applications for localization of single and multiple antigens in paraffin sections. J. Histochem. Cytochem. 30: 691-696
-
Sangare-Tigori, B., S. Moukha, H. J. Kouadio, A. M. Betbeder, D. S. Dano, and E. E. Creppy. 2006. Co-occurrence of aflatoxin B1, fumonisin B1, ochratoxin A and zearalenone in cereals and peanuts from C
$\^{o}$ te d'Ivoire. Food Addit. Contam. 23: 1000-1007 https://doi.org/10.1080/02652030500415686 - Santos, E. A. and E. A. Vargas. 2002. Immunoaffinity column clean-up and thin layer chromatography for determination of ochratoxin A in green coffee. Food Addit. Contam. 19: 447-458 https://doi.org/10.1080/02652030110213717
- Sapsford, K. E., M. M. Ngundi, M. H. Moore, M. E. Lassman, L. C. Shriver-Lake, C. R. Taitt, and F. S. Ligler. 2006. Rapid detection of foodborne contamination using an array biosensor. Sens. Actuators B Chem. 113: 599-607 https://doi.org/10.1016/j.snb.2005.07.008
- Schollenberger, M., H. M. Muller, M. Rufle, S. Suchy, S. Planck, and W. Drochner. 2006. Natural occurence of 16 Fusarium toxins in grains and feedstuffs of plant origin from Germany. Mycopathologia 161: 43-52 https://doi.org/10.1007/s11046-005-0199-7
- Shim, W. B., A. Y. Kolosova, Y. J. Kim, Z. Y. Yang, S. J. Park, S. A. Eremin, I. S. Lee, and D. H. Chung. 2004. Fluorescence polarization immunoassay based on a monoclonal antibody for the detection of ochratoxin A. Int. J. Food Sci. Tech. 39: 829-837 https://doi.org/10.1111/j.1365-2621.2004.00856.x
- Shim, W. B., Z. Y. Yang, J. S. Kim, J. Y. Kim, S. J. Kang, G. J. Woo, Y. C. Chung, S. A. Eremin, and D. H. Chung. 2007. Development of immunochromatography strip-test using nanocolloidal gold-antibody probe for the rapid detection of aflatoxin B1 in grain and feed samples. J. Microbiol. Biotechnol. 17: 1629-1637
- Shim, W. B., Z. Y. Yang, J. Y. Kim, J. G. Choi, J. H. Je, S. J. Kang, A. Y. Kolosova, S. A. Eremin, and D. H. Chung. 2006. Immunochromatography using colloidal gold-antibody probe for the detection of atrazine in water samples. J. Agric. Food Chem. 54: 9728-9734 https://doi.org/10.1021/jf0620057
- Shumacher, R. and R. Krska. 2001. International interlaboratory study for the determination of the Fusarium mycotoxins zearalenone and deoxynivalenol in agricultural commodities. Food Addit. Contam. 18: 417-430 https://doi.org/10.1080/02652030120332
- Suzuki, T., Y. Munakata, K. Morita, T. Shinoda, and H. Ueda. 2007. Sensitive detection of estrogenic mycotoxin zearalenone by open sandwich immunoassay. Anal. Sci. 23: 65-70 https://doi.org/10.2116/analsci.23.65
- Thouvenot, D. R. and R. F. Morfin. 1983. Radioimmunoassay for zearalenone and zearalanol in human serum: Production, properties, and use of porcine antibodies. Appl. Environ. Microbiol. 45: 16-23
- Tiemann, U. and S. Danicke. 2007. In vivo and in vitro effects of the mycotoxins zearalenone and deoxynivalenol on different non-reproductive and reproductive organs in female pigs: A review. Food Addit. Contam. 24: 306-314 https://doi.org/10.1080/02652030601053626
- Urraca, J. J., E. Benito-Pena, C. Perez-Conde, M. C. Moreno- Bondi, and J. J. Pestka. 2005. Analysis of zearalenone in cereal and swine feed samples using an automated flow-through immunosensor. J. Agric. Food Chem. 53: 3338-3344 https://doi.org/10.1021/jf048092p
- Varelis, P., S. L. Leong, A. Hocking, and G. Giannikopoulos. 2006. Quantitative analysis of ochratoxin A in wine and beer using solid phase extraction and high performance liquid chromatographyfluorescence detection. Food Addit. Contam. 23: 1308-1315 https://doi.org/10.1080/02652030600838258
- Wang, X., K. Li, D. Shi, X. Jin, N. Xiong, F. Peng, D. Peng, and D. Bi. 2007. Development and validation of an immunochromatographic assay for rapid detection of sulfadiazine in eggs and chickens. J. Chromatogr. B 847: 289-295 https://doi.org/10.1016/j.jchromb.2006.10.038
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