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Extraction and preconcentration of sulfonamides in honey samples by cetyltrimethylammonium bromide coated silica gel and their determination by HPLC

Year 2014, Volume: 42 Issue: 2, 175 - 182, 01.06.2014

Abstract

Asimple, rapid, sensitive, and inexpensive solid phase extraction method using cetyltrimethylammonium bromide-silica gel for preconcentration of sulfadiazine, sulfamethazine, sulfamerazine and sulphameth- oxazole antibiotics prior to the determination by high performance liquid chromatography was developed. The effects of parameters such as type of surfactant, pH, amount of surfactant, flow rate, type and volume of elut- ing agent were examined. The detection limits of sulfonamides were in the range of 3-13 μg L-1. The calibration curves were linear in the range of 0.010-2.0 μg/mL. The proposed method was successfully applied to deter- mine sulfonamides in different honey samples.

References

  • 1. H.T. Lai, J.H. Hou, Light and microbial effects on the transformation of four sulfonamides in eel pond water and sediment, Aquaculture, 283 (2008) 50.
  • 2. L. Sun, L.G. Chen, X. Sun, X.B. Du, Y.S. Yue, D.Q. He, Analysis of sulfonamides in environmental water samples based on magnetic mixed hemimicelles solidphase extraction coupled with HPLC-UV detection, Chemosphere, 77 (2009) 1306.
  • 3. W. Baran, E. Adamek, J. Ziemianska, A. Sobczak, Effects of the presence of sulfonamides in the environment and their influence on human health, J. Hazard. Mater., 196 (2011) 1.
  • 4. V. F. Samanidou, E.N. Evaggelopoulou, Analytical strategies to determine antibiotic residues in fish, J. Sep. Sci., 30 (2007) 2549.
  • 5. C. Yu, B. Hu, C-18-coated stir bar sorptive extraction combined with high performance liquid chromatography-electrospray tandem mass spectrometry for the analysis of sulfonamides in milk and milk powder, Talanta, 90 (2012) 77.
  • 6. S. Qin, S. Deng, L. Su, P. Wang, Simultaneous determination of five sulfonamides in wastewater using group-selective molecularly imprinted solidphase extraction coupled with HPLC-DAD, Anal. Methods, 4 (2012) 4278.
  • 7. R. Fernandez-Torres, M.O. Consentino, M.A.B. Lopez, M. C. Mochon, Simultaneous determination of 11 antibiotics and their main metabolites from four different groups by reversed-phase high-performance liquid chromatography diode array fluorescence (HPLC-DAD-FLD) in human urine samples, Talanta, 81 (2010) 871.
  • 8. W.L. Tian, L.Y. Gao, Y.Z. Zhao, W.Y. Peng, Z.Z. Chen, Simultaneous determination of metronidazole, chloramphenicol and 10 sulfonamide residues in honey by LC-MS/MS, Anal. Methods, 5 (2013) 1283.
  • 9. M.M. Zheng, M.Y. Zhang, G.Y. Peng, Y.Q. Feng, Monitoring of sulfonamide antibacterial residues in milk and egg by polymer monolith microextraction coupled to hydrophilic interaction chromatography/ mass spectrometry, Anal. Chim. Acta, 625 (2008) 160.
  • 10. M.E. Dasenaki, N.S. Thomaidis, Multi-residue determination of seventeen sulfonamides and five tetracyclines in fish tissue using a multi-stage LCESI-MS/MS approach based on advanced mass spectrometric techniques, Anal. Chim. Acta, 672 (2010) 93.
  • 11. W.H. Tsai, H.Y. Chuang, H.H. Chen, Y.W. Wu, S.H. Cheng, T.C. Huang, Application of sugaring-out extraction for the determination of sulfonamides in honey by high-performance liquid chromatography with fluorescence detection, J. Chromatogr A., 1217 (2010) 7812. 12. G. H. Zou, M. X. Xie, X.F. Wang, Y. Liu, J. Wang, J. Song, H. Gao, J. Han, Determination of sulphonamides in animal tissues by high performance liquid chromatography with pre-column derivatization of 9-fluorenylmethyl chloroformate, J. Sep.Sci., 30 (2007) 2647.
  • 13. H. Li, H. Sun, J. Zhang, K. Pang, Highly sensitive and simultaneous determination of sixteen sulphonamide antibiotics, four acetyled metabolites and trimethoprim in meat by rapid resolution liquid chromatography-tandem mass spectrometry, Food Control., 31 (2013) 359.
  • 14. M.J. Garcia-Galan, T. Garrido, J. Fraile, A. Ginebreda, M.S. Diaz-Cruz, D. Barcelo, Application of fully automated online solid phase extraction-liquid chromatography-electrospray-tandem mass spectrometry for the determination of sulfonamides and their acetylated metabolites in groundwater, Anal. Bioanal. Chem., 399 (2011) 795.
  • 15. Q. Liu, J. B. Shi, T. Wang, F. Guo, L.H. Liu, G.B. Jiang, Hemimicelles/admicelles supported on magnetic graphene sheets for enhanced magnetic solid-phase extraction, J. Chromatogr A., 1257 (2012) 1.
  • 16. P. Tashakkori, S. S. Bozkurt, M. Merdivan, G. Binzet, N. Kulcu, Separation and preconcentration of palladium using benzoylthiourea immobilized on a cationic surfactant coated silica gel, Anal. Methods., 4 (2012) 4135.
  • 17. G.L. Chen, S.Y. Suen, S. Vied, K. Pickering, C. Perrin, E.D. Conte, Dihexadecyldimethylammonium hydroxide admicelles on silica for the preconcentration of selected phenols, Analyst, 134 (2009) 331.
  • 18. T. Saitoh, M. Yamaguchi, M. Hiraide, Surfactantcoated aluminum hydroxide for the rapid removal and biodegradation of hydrophobic organic pollutants in water, Water Res., 45 (2011) 1879.
  • 19. F. Merino, S. Rubio, D. Perez-Bendito, Solidphase extraction of amphiphiles based on mixed hemimicelle/admicelle formation: Application to the concentration of benzalkonium surfactants in sewage and river water, Anal.Chem., 75 (2003) 6799.
  • 20. Y. Ito, H. Oka, Y. Ikai, H. Matsumoto, Y. Miyazaki, H. Nagase, Application of ion-exchange cartridge cleanup in food analysis V. Simultaneous determination of sulphonamide antibacterials in animal liver and kidney using high-performance liquid chromatography with ultraviolet and mass spectrometric detection, J. Chromatogr A., 898 (2000) 95.
  • 21. R.H.M.M. Granja, A.M. Nino, F. Rabone, A.G. Salerno, A reliable high-performance liquid chromatography with ultraviolet detection for the determination of sulfonamides in honey, Anal. Chim. Acta, 613 (2008) 116.
  • 22. S.S. Bozkurt, K. Ocakoglu, M. Merdivan, Separation and preconcentration of mercury in water samples by ionic liquid supported cloud point extraction and fluorimetric determination, Microchim. Acta, 177 (2012) 47.
  • 23. M. Ghaedi, K. Niknam, A. Shokrollahi, E. Niknam, H.R. Rajab, M. Soylak, Flame atomic absorption spectrometric determination of trace amounts of heavy metal ions after solid phase extraction using modified sodium dodecyl sulfate coated on alumina, J. Hazard. Mater., 155 (2008) 121.
  • 24. Commission of the European Communities, Council Regulation EEC 2377/90. Official Journal of the European Union, No L.224 (1990) 1.

Setiltrimetilamonyum bromür kaplı silika jel kullanılarak bal örneklerindeki sülfonamitlerin özütlenmesi, önderiştirilmesi ve HPLC ile tayini

Year 2014, Volume: 42 Issue: 2, 175 - 182, 01.06.2014

Abstract

S unulan çalışmada, antibiyotiklerin yüksek performans sıvı kromatografisi tayininden önce setiltrimetilamonyum bromür-silika jel kullanarak sülfadiazin, sulfamet azin, sülfametazin ve sülfometoksazol antibiyotiklerinin ön deriştirilmesi için basit, hızlı, hassas ve ucuz katı faz özütleme yöntemi geliştirildi. Sürfaktan türü, pH, sürfaktan miktarı, akış hızı, elüsyon maddesinin tipi ve hacmi gibi parametrelerin etkisi incelendi. Sülfonamitlerin tayin limiti 3-13 µg L-1 aralığındadır. Kalibrasyon eğrileri 0.010-2.0 µg/mL aralığında doğrusaldır. Önerilen yöntem başarılı bir şekilde farklı bal örneklerindeki sülfonamitleri belirlemek için uygulanmıştır

References

  • 1. H.T. Lai, J.H. Hou, Light and microbial effects on the transformation of four sulfonamides in eel pond water and sediment, Aquaculture, 283 (2008) 50.
  • 2. L. Sun, L.G. Chen, X. Sun, X.B. Du, Y.S. Yue, D.Q. He, Analysis of sulfonamides in environmental water samples based on magnetic mixed hemimicelles solidphase extraction coupled with HPLC-UV detection, Chemosphere, 77 (2009) 1306.
  • 3. W. Baran, E. Adamek, J. Ziemianska, A. Sobczak, Effects of the presence of sulfonamides in the environment and their influence on human health, J. Hazard. Mater., 196 (2011) 1.
  • 4. V. F. Samanidou, E.N. Evaggelopoulou, Analytical strategies to determine antibiotic residues in fish, J. Sep. Sci., 30 (2007) 2549.
  • 5. C. Yu, B. Hu, C-18-coated stir bar sorptive extraction combined with high performance liquid chromatography-electrospray tandem mass spectrometry for the analysis of sulfonamides in milk and milk powder, Talanta, 90 (2012) 77.
  • 6. S. Qin, S. Deng, L. Su, P. Wang, Simultaneous determination of five sulfonamides in wastewater using group-selective molecularly imprinted solidphase extraction coupled with HPLC-DAD, Anal. Methods, 4 (2012) 4278.
  • 7. R. Fernandez-Torres, M.O. Consentino, M.A.B. Lopez, M. C. Mochon, Simultaneous determination of 11 antibiotics and their main metabolites from four different groups by reversed-phase high-performance liquid chromatography diode array fluorescence (HPLC-DAD-FLD) in human urine samples, Talanta, 81 (2010) 871.
  • 8. W.L. Tian, L.Y. Gao, Y.Z. Zhao, W.Y. Peng, Z.Z. Chen, Simultaneous determination of metronidazole, chloramphenicol and 10 sulfonamide residues in honey by LC-MS/MS, Anal. Methods, 5 (2013) 1283.
  • 9. M.M. Zheng, M.Y. Zhang, G.Y. Peng, Y.Q. Feng, Monitoring of sulfonamide antibacterial residues in milk and egg by polymer monolith microextraction coupled to hydrophilic interaction chromatography/ mass spectrometry, Anal. Chim. Acta, 625 (2008) 160.
  • 10. M.E. Dasenaki, N.S. Thomaidis, Multi-residue determination of seventeen sulfonamides and five tetracyclines in fish tissue using a multi-stage LCESI-MS/MS approach based on advanced mass spectrometric techniques, Anal. Chim. Acta, 672 (2010) 93.
  • 11. W.H. Tsai, H.Y. Chuang, H.H. Chen, Y.W. Wu, S.H. Cheng, T.C. Huang, Application of sugaring-out extraction for the determination of sulfonamides in honey by high-performance liquid chromatography with fluorescence detection, J. Chromatogr A., 1217 (2010) 7812. 12. G. H. Zou, M. X. Xie, X.F. Wang, Y. Liu, J. Wang, J. Song, H. Gao, J. Han, Determination of sulphonamides in animal tissues by high performance liquid chromatography with pre-column derivatization of 9-fluorenylmethyl chloroformate, J. Sep.Sci., 30 (2007) 2647.
  • 13. H. Li, H. Sun, J. Zhang, K. Pang, Highly sensitive and simultaneous determination of sixteen sulphonamide antibiotics, four acetyled metabolites and trimethoprim in meat by rapid resolution liquid chromatography-tandem mass spectrometry, Food Control., 31 (2013) 359.
  • 14. M.J. Garcia-Galan, T. Garrido, J. Fraile, A. Ginebreda, M.S. Diaz-Cruz, D. Barcelo, Application of fully automated online solid phase extraction-liquid chromatography-electrospray-tandem mass spectrometry for the determination of sulfonamides and their acetylated metabolites in groundwater, Anal. Bioanal. Chem., 399 (2011) 795.
  • 15. Q. Liu, J. B. Shi, T. Wang, F. Guo, L.H. Liu, G.B. Jiang, Hemimicelles/admicelles supported on magnetic graphene sheets for enhanced magnetic solid-phase extraction, J. Chromatogr A., 1257 (2012) 1.
  • 16. P. Tashakkori, S. S. Bozkurt, M. Merdivan, G. Binzet, N. Kulcu, Separation and preconcentration of palladium using benzoylthiourea immobilized on a cationic surfactant coated silica gel, Anal. Methods., 4 (2012) 4135.
  • 17. G.L. Chen, S.Y. Suen, S. Vied, K. Pickering, C. Perrin, E.D. Conte, Dihexadecyldimethylammonium hydroxide admicelles on silica for the preconcentration of selected phenols, Analyst, 134 (2009) 331.
  • 18. T. Saitoh, M. Yamaguchi, M. Hiraide, Surfactantcoated aluminum hydroxide for the rapid removal and biodegradation of hydrophobic organic pollutants in water, Water Res., 45 (2011) 1879.
  • 19. F. Merino, S. Rubio, D. Perez-Bendito, Solidphase extraction of amphiphiles based on mixed hemimicelle/admicelle formation: Application to the concentration of benzalkonium surfactants in sewage and river water, Anal.Chem., 75 (2003) 6799.
  • 20. Y. Ito, H. Oka, Y. Ikai, H. Matsumoto, Y. Miyazaki, H. Nagase, Application of ion-exchange cartridge cleanup in food analysis V. Simultaneous determination of sulphonamide antibacterials in animal liver and kidney using high-performance liquid chromatography with ultraviolet and mass spectrometric detection, J. Chromatogr A., 898 (2000) 95.
  • 21. R.H.M.M. Granja, A.M. Nino, F. Rabone, A.G. Salerno, A reliable high-performance liquid chromatography with ultraviolet detection for the determination of sulfonamides in honey, Anal. Chim. Acta, 613 (2008) 116.
  • 22. S.S. Bozkurt, K. Ocakoglu, M. Merdivan, Separation and preconcentration of mercury in water samples by ionic liquid supported cloud point extraction and fluorimetric determination, Microchim. Acta, 177 (2012) 47.
  • 23. M. Ghaedi, K. Niknam, A. Shokrollahi, E. Niknam, H.R. Rajab, M. Soylak, Flame atomic absorption spectrometric determination of trace amounts of heavy metal ions after solid phase extraction using modified sodium dodecyl sulfate coated on alumina, J. Hazard. Mater., 155 (2008) 121.
  • 24. Commission of the European Communities, Council Regulation EEC 2377/90. Official Journal of the European Union, No L.224 (1990) 1.
There are 23 citations in total.

Details

Primary Language English
Journal Section Research Article
Authors

Paniz Tashakkori This is me

Serap Seyhan Bozkurt This is me

Melek Merdivan This is me

Publication Date June 1, 2014
Published in Issue Year 2014 Volume: 42 Issue: 2

Cite

APA Tashakkori, P., Bozkurt, S. S., & Merdivan, M. (2014). Extraction and preconcentration of sulfonamides in honey samples by cetyltrimethylammonium bromide coated silica gel and their determination by HPLC. Hacettepe Journal of Biology and Chemistry, 42(2), 175-182.
AMA Tashakkori P, Bozkurt SS, Merdivan M. Extraction and preconcentration of sulfonamides in honey samples by cetyltrimethylammonium bromide coated silica gel and their determination by HPLC. HJBC. June 2014;42(2):175-182.
Chicago Tashakkori, Paniz, Serap Seyhan Bozkurt, and Melek Merdivan. “Extraction and Preconcentration of Sulfonamides in Honey Samples by Cetyltrimethylammonium Bromide Coated Silica Gel and Their Determination by HPLC”. Hacettepe Journal of Biology and Chemistry 42, no. 2 (June 2014): 175-82.
EndNote Tashakkori P, Bozkurt SS, Merdivan M (June 1, 2014) Extraction and preconcentration of sulfonamides in honey samples by cetyltrimethylammonium bromide coated silica gel and their determination by HPLC. Hacettepe Journal of Biology and Chemistry 42 2 175–182.
IEEE P. Tashakkori, S. S. Bozkurt, and M. Merdivan, “Extraction and preconcentration of sulfonamides in honey samples by cetyltrimethylammonium bromide coated silica gel and their determination by HPLC”, HJBC, vol. 42, no. 2, pp. 175–182, 2014.
ISNAD Tashakkori, Paniz et al. “Extraction and Preconcentration of Sulfonamides in Honey Samples by Cetyltrimethylammonium Bromide Coated Silica Gel and Their Determination by HPLC”. Hacettepe Journal of Biology and Chemistry 42/2 (June 2014), 175-182.
JAMA Tashakkori P, Bozkurt SS, Merdivan M. Extraction and preconcentration of sulfonamides in honey samples by cetyltrimethylammonium bromide coated silica gel and their determination by HPLC. HJBC. 2014;42:175–182.
MLA Tashakkori, Paniz et al. “Extraction and Preconcentration of Sulfonamides in Honey Samples by Cetyltrimethylammonium Bromide Coated Silica Gel and Their Determination by HPLC”. Hacettepe Journal of Biology and Chemistry, vol. 42, no. 2, 2014, pp. 175-82.
Vancouver Tashakkori P, Bozkurt SS, Merdivan M. Extraction and preconcentration of sulfonamides in honey samples by cetyltrimethylammonium bromide coated silica gel and their determination by HPLC. HJBC. 2014;42(2):175-82.

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