Cloud Point Extraction and Determination of Cyclopiazonic Acid and Tenuazonic Acid in Tomato Juice
Year 2014,
Volume: 42 Issue: 3, 387 - 393, 01.09.2014
Hayriye Mine Antep
Melek Merdivan
Abstract
Acloud point extraction as a preconcentration technique was developed for the determination of a tenua- zonic and a cyclopiazonic acid in tomato juices. These mycotoxins were extracted and preconcentrated using Triton-X 114 as surfactant and determined by high performance liquid chromatography with ultraviolet detection. The optimized extraction conditions were pH 2, 4% Triton X-114 w/v , 1% KNO3 w/v , 50°C as the extraction temperature and 30 min for extraction time. The extraction recoveries were found as 40% and 95% for tenuazonic acid and cyclopiazonic acid, respectively. The linearity of the proposed method was in the concentration range of 10 to 2000 ng mL-1 for both mycotoxins.
References
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- 22. E.L. Silva, P.D. Roldan, M.F. Gine, Simultaneous preconcentration of copper, zinc, cadmium, and nickel in water samples by cloud point extraction using 4-(2-pyridylazo)-resorcinol and their determination by inductively coupled plasma optic emission spectrometry, J. Hazard. Mater., 171 (2009) 1133.
- 23. Z. Yildiz, G. Arslan, A. Tor, Preconcentrative separation of chromium(III) species from chromium(VI) by cloud point extraction and determination by flame atomic absorption spectrometry, Microchim. Acta, 174 (2011) 399.
- 24. L.L. Zhao, S.X. Zhong, K.M. Fang, Z.S. Qian, J.R. Chen, Determination of cadmium(II), cobalt(II), nickel(II), lead(II), zinc(II), and copper(II) in water samples using dual-cloud point extraction and inductively coupled plasma emission spectrometry, J. Hazard. Mater., 239 (2012) 206.
- 25. P.R. Aranda, R.A. Gil, S. Moyano, I.E. de Vito, L.D. Martinez, Cloud point extraction of mercury with PONPE 7.5 prior to its determination in biological samples by ETAAS, Talanta, 75 (2008) 307.
- 26. H. Qin, G. Yu, M. Chen, Y. Zou, Y.L. Yang, Ultrasonicthermostatic-assisted cloud point extraction coupled to high-performance liquid chromatography for the analysis of adrenalines residues in milk Eur. Food Res. Technol., 234 (2012) 543.
- 27. X.T. Liu, W. Feng, C.L. Bao, Q. Jia, Determination of carbamate pesticides and phthalates in vegetables by a cloud point extraction process using tergitol 15-s-7 and high performance liquid chromatography, Anal. Lett., 45 (2012) 2663.
- 28. N. Pourreza, S. Rastegarzadeh, A. Larki, Determination of Allura red in food samples after cloud point extraction using mixed micelles, Food Chem., 126 (2011) 1465.
- 29. C.C. Wang, L.P. Fernández, M.R. Gómez, Sensitive ergotamine determination in pharmaceuticals and biological samples using cloud point preconcentration and spectrofluorimetric detection, Anal. Chim. Acta, 768 (2013) 90.
- 30. M.E. McCarroll, A.G. Joly, Z. Wang, D.M. Friedrich, R. von Wandruszka, Time-Resolved Fluorescence Anisotropies in Mixed Surfactant Solutions, J. Colloid Interface Sci., 218 (1999) 260.
- 31. M.K. Purkait, S. DasGupta, S. De, Performance of TX100 and TX-114 for the separation of chrysoidine dye using cloud point extraction, J. Hazard. Mater., 137 (2006) 827
- 32. J. Zhou, X. L. Sun, S.W. Wang, Micelle-mediated extraction and cloud-point preconcentration of osthole and imperatorin from Cnidium monnieri with analysis by high performance liquid chromatography, J. Chromatogr. A, 1200 (2008) 93.
- 33. European Commission. (2006). Commission Recommendation 2006/576/EC on the presence of deoxynivalenol, zearalenone, ochratoxin A, T-2 and HT-2 and fumonisins in products intended for animal feeding, Official Journal of the European Union, No L229/7.
Domates Suyundaki Siklopiazonik Asit ve Tenuazonik Asitin Bulutlanma Noktası Ekstraksiyonu ve Tayini
Year 2014,
Volume: 42 Issue: 3, 387 - 393, 01.09.2014
Hayriye Mine Antep
Melek Merdivan
Abstract
D omates suyunda tenuazonik asit ve siklopiazonik asit tayini için zenginleştirme yöntemi olarak bulutlanma noktası ekstraksiyonu geliştirildi. Mikotoksinler yüzey aktif madde olarak Triton X-114 ile zenginleştirildi ve ekstrakte edildi ve ultraviyole dedektörlü yüksek performanslı sıvı kromatografisi tayin edildi. Optimize edilen ekstraksiyon koşulları pH 2, %4 Triton X-114 w/v , %1 KNO3 w/v , 50°C ekstraksiyon sıcaklığı ve ekstraksiyon süresi 30dk olarak belirlendi. Ekstraksiyon geri kazanımları tenuazonik asit ve siklopiazonik asit için sırasıyla %40 ve %95 olarak bulundu. Sunulan yöntemin derişim aralığı her iki mikotoksin için 10 ile 2000 ng mL-1’ dir
References
- 1. K.C. Luk, B. Kobbe, J.M. Townsend, Production of cyclopiazonic acid by Aspergillus flavus Link, Appl. Environ. Microb., 33 (1977) 211.
- 2. S. Iwasaki, H. Muro, S. Nozoe, S. Okuda, Z. Sato, Isolation of 3,4-dihydro-3,4,8-trihydroxy-1(2H)-naphthalenone and tenuazonic acid from Pyricularia oryzae cavara, Tetrahedron Letters, 13 (1972) 13.
- 3. A.C. Pier, E.L. Belden, J.A. Ellis, E.B. Nelson, L.R. Maki, Effects of cyclopiazonic acid and aflatoxin singly and in combination on selected clinical, pathological and immunological responses of guinea pigs, Mycopathologia, 105 (1989) 135.
- 4. R.E. Morrisey, W.P. Norred, R.J. Cole, J.B. Dorner, Toxicity of the mycotoxin, cyclopiazonic acid, to Sprague-Dawley rats, Toxicol. Appl. Pharmacol., 77 (1985) 94.
- 5. L. Carrasco, D. Vazquez, Differences in eukaryotic ribosomes detected by the selective action of an antibiotic, Biochimica et Biophysica Acta (BBA) - Nucleic Acids and Protein Synthesis, 319 (1973) 209.
- 6. A.S. Moldes-Anaya, T.N. Asp, G.S. Eriksen, I. Skaar, T. Rundberget, Determination of cyclopiazonic acid in food and feeds by liquid chromatography-tandem mass spectrometry, J. Chromatogr. A, 1216 (2009) 3812.
- 7. C.A. Oliveira, J. Rosmanınho, R. Rosim, Aflatoxin M1 and cyclopiazonic acid in fluid milk traded in São Paulo, Brazil, Food Addit. Contam. A, 26 (2006) 196.
- 8. S. Da Motta, L.M.V. Soares, Survey of Brazilian tomato products for alternariol, alternariol monomethyl ether, tenuazonic acid and cyclopiazonic acid, Food Addit. Contam. A, 18 (2001) 630.
- 9. D. Heperkan, D., S. Somuncuoglu, F. KarbanciogluGuler, N. Mecik, Natural contamination of cyclopiazonic acid in dried figs and co-occurrence of aflatoxin, Food Control, 23, 2012, 82.
- 10. M.P. Azcarate, A. Patriarca, L. Terminiello, V.F. Pinto, Alternaria Toxins in Wheat during the 2004 to 2005 Argentinean Harvest, J. Food Protect., 71 (2008) 1262.
- 11. F. Li, T. Yoshizawa, Alternaria mycotoxins in weathered wheat from China, J. Agr. Food Chem., 48 (2000) 2920.
- 12. V. Sanchis, A. Sanclemente, J. Usall, I. Vinas, Incidence of mycotoxigenic Alternaria alternata and Aspergillus flavus in barley, J. Food Protect., 56 (1993) 246.
- 13. D. Siegel, T. Rasenko, M. Koch, I. Nehls, Determination of the Alternaria mycotoxin tenuazonic acid in cereals by high-performance liquid chromatography–electrospray ionization ion-trap multistage mass spectrometry after derivatization with 2,4-dinitrophenylhydrazine, J. Chromatogr. A, 1216 (2009) 4582.
- 14. D. Siegel, S. Merkel, M. Koch, I. Nehls, Quantification of the Alternaria mycotoxin tenuazonic acid in beer, Food Chem., 120 (2010) 902.
- 15. EMAN, European Mycotoxin Awareness Network (2000). http://193.132.193.215/eman2/wp2analy. asp, The European Commission, Quality of Life and Management of Living Resources Programme (QoL), Key Action 1 (KA1) on Food, Nutrition and Health, QLK1- CT-2000-01248.
- 16. M.A.Woody, F.S. Chu., in: J. Chelkowski, A. Visconti (Eds.), Toxicology of Alternaria mycotoxins. Alternaria— Biology, Plant Disease and Metabolites, Amsterdam, 1992, pp. 409-433.
- 17. A. Aresta, N. Cioffi, F. Palmisano, C.G. Zamboninüü, Simultaneous determination of ochratoxin A and cyclopiazonic, mycophenolic, and tenuazonic acids in cornflakes by solid-phase microextraction coupled to high-performance liquid chromatography, J. Agr. Food Chem., 51 (2003) 5232.
- 18. M.C. Spanjer, P.M. Rensen, J.M. Scholten, LC-MS/MS multi-method for mycotoxins after single extraction, with validation data for peanut, pistachio, wheat, maize, cornflakes, raisins and figs, Food Addit. Contam. A, 25 (2008) 472.
- 19. L. Pussemier, J.Y. Pierard, M. Anselme, E.K. Tangni, J.C. Motte, Y. Larondelle, Food Addit. Contam. A, 2006, 23, 1208.
- 20. W. Watanabe, H. Tanaka, A non-ionic surfactant as a new solvent for liquid-liquid extraction of zinc(II) with 1-(2-pyridylazo)-2-naphthol, Talanta, 25 (1978) 585.
- 21. S. Xie, M.C. Paau, C.F. Li, D. Xiao, M.M. Choi, Separation and preconcentration of persistent organic pollutants by cloud point extraction, J. Chromatogr. A, 1217 (2010) 2306.
- 22. E.L. Silva, P.D. Roldan, M.F. Gine, Simultaneous preconcentration of copper, zinc, cadmium, and nickel in water samples by cloud point extraction using 4-(2-pyridylazo)-resorcinol and their determination by inductively coupled plasma optic emission spectrometry, J. Hazard. Mater., 171 (2009) 1133.
- 23. Z. Yildiz, G. Arslan, A. Tor, Preconcentrative separation of chromium(III) species from chromium(VI) by cloud point extraction and determination by flame atomic absorption spectrometry, Microchim. Acta, 174 (2011) 399.
- 24. L.L. Zhao, S.X. Zhong, K.M. Fang, Z.S. Qian, J.R. Chen, Determination of cadmium(II), cobalt(II), nickel(II), lead(II), zinc(II), and copper(II) in water samples using dual-cloud point extraction and inductively coupled plasma emission spectrometry, J. Hazard. Mater., 239 (2012) 206.
- 25. P.R. Aranda, R.A. Gil, S. Moyano, I.E. de Vito, L.D. Martinez, Cloud point extraction of mercury with PONPE 7.5 prior to its determination in biological samples by ETAAS, Talanta, 75 (2008) 307.
- 26. H. Qin, G. Yu, M. Chen, Y. Zou, Y.L. Yang, Ultrasonicthermostatic-assisted cloud point extraction coupled to high-performance liquid chromatography for the analysis of adrenalines residues in milk Eur. Food Res. Technol., 234 (2012) 543.
- 27. X.T. Liu, W. Feng, C.L. Bao, Q. Jia, Determination of carbamate pesticides and phthalates in vegetables by a cloud point extraction process using tergitol 15-s-7 and high performance liquid chromatography, Anal. Lett., 45 (2012) 2663.
- 28. N. Pourreza, S. Rastegarzadeh, A. Larki, Determination of Allura red in food samples after cloud point extraction using mixed micelles, Food Chem., 126 (2011) 1465.
- 29. C.C. Wang, L.P. Fernández, M.R. Gómez, Sensitive ergotamine determination in pharmaceuticals and biological samples using cloud point preconcentration and spectrofluorimetric detection, Anal. Chim. Acta, 768 (2013) 90.
- 30. M.E. McCarroll, A.G. Joly, Z. Wang, D.M. Friedrich, R. von Wandruszka, Time-Resolved Fluorescence Anisotropies in Mixed Surfactant Solutions, J. Colloid Interface Sci., 218 (1999) 260.
- 31. M.K. Purkait, S. DasGupta, S. De, Performance of TX100 and TX-114 for the separation of chrysoidine dye using cloud point extraction, J. Hazard. Mater., 137 (2006) 827
- 32. J. Zhou, X. L. Sun, S.W. Wang, Micelle-mediated extraction and cloud-point preconcentration of osthole and imperatorin from Cnidium monnieri with analysis by high performance liquid chromatography, J. Chromatogr. A, 1200 (2008) 93.
- 33. European Commission. (2006). Commission Recommendation 2006/576/EC on the presence of deoxynivalenol, zearalenone, ochratoxin A, T-2 and HT-2 and fumonisins in products intended for animal feeding, Official Journal of the European Union, No L229/7.