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  • P-ISSN 1225-0163
  • E-ISSN 2288-8985

The study of analytical method for sulfonamide antibiotics and their metabolites in environmental samples

Analytical Science and Technology / Analytical Science and Technology, (P)1225-0163; (E)2288-8985
2010, v.23 no.5, pp.437-445
https://doi.org/10.5806/AST.2010.23.5.437






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Abstract

The aim of this study was to develop an analytical method for sulfonamide antibiotics (sulfadiazine,sulfamerazine, sulfamethazine, sulfamethoxazole, sulfathiazole) and their metabolites (N4-acetylsulfadiazine, N4-acetylsulfamerazine, N4-acetylsulfamethazine, N4-acetylsulfamethoxazole, sulfamethoxazole-N1-glucuronide) in environmental samples. The solid phase extraction (SPE) with LC/ESI-MS/MS have been used for the analysis of target compounds, and the recoveries of SPE clean-up were at the range of 12-94% for C18 cartridge, 60-95% for HLB cartridge, 25-123% for MCX cartridge, and 70-90% for tandem HLB/MCX. By established method, detection limit,recovery, and relative standard deviation were 0.001~0.187 ng/mL, 66~115%, and 5~17%, respectively. This method was effective and sensitive to use for the simultaneous determination of sulfonamide antibiotics and their metabolites in environmental samples. Four sulfonamide antibiotics were detected at the range of 0.008~2.153 ng/mL. For metabolites, only N4-acetylsulfamethoxazole was detected, but the concentration was under the MDL level.

keywords
sulfonamide antibiotics, metabolite, PPCPs, LC/MS/MS


Reference

1

1. M. J. García-Galán, M. S. Díaz-Cruz and D. Barceló, Trend Anal. Chem., 27(11), 1008-1022(2008).

2

2. A. K. Sarmaha, M. T. Meyer and A. B. A. Boxall, Chemosphere, 65, 725-759(2006).

3

3. 국립환경과학원, “환경 중 의약물질 분석방법 연구 및 노출실태조사(I)”, 2006.

4

4. T. B. Vree, E. Schoondermark-van de Ven, C. P. W. G. M. Verwey-van Wissen, A. M. Baars, A. Swolfs, P. M. van Galen and H. Amatdjais-Groenen, J. Chromatogr. B, 670, 111-123(1995).

5

5. T. B. Vree, A. J. van der Ven, C. P. Verwey-van Wis- sen, E. W. van Ewijk-Beneken Kolmer, A. E. Swolfs, P. M. van Galen and H. Amatdjais-Groenen, J. Chromatogr. B, 658, 327-340(1994).

6

6. T. B. Vree, E. W. Kolmer, M. Martea, R. Bosch and M. Shimoda, J. Chromatogr., 526, 119-128(1990).

7

7. X. S. Miao, F. Bishay, M. Chen and C. D. Metcalfe, Environ. Sci. Technol., 38(13), 3533-3541(2004).

8

8. A. B. A. Boxall, D. W. Kolpin, B. Halling-Sørensen and J. Tolls, Environ. Sci. Technol., 37(15), 286A-294A(2003).

9

9. M. J. García-Galán, M. S. Díaz-Cruz and D. Barceló, Trends in Analytical Chemistry, 28(6), 804-819(2009).

10

10. S. A. Mohring, I. Strzysch, M. R. Fernandes, T. K. Kiffmeyer, J. Tuerk and G. Hamscher, Environ. Sci. Technol., 43, 2569-2574(2009).

11

11. M. S. Díaz-Cruz, M. J. García-Galán and D. Barceló, J. Chromatogr. A., 1193, 50-59(2008).

12

12. A. Göbel, C. S. McArdell, A. Joss, H. Siegrist and W. Giger, Sci. Total Environ., 372, 361-371(2007).

13

13. M. J. Hilton and K. V. Thomas, J. Chromatogr. A., 1015, 129-141(2003).

14

14. A. Göbel, C. S. McArdell, M. J. F. Suter and W. Giger, Anal. Chem., 76(16), 4756-4764(2004).

15

15. M. Radke, C. Lauwigi, G. Heinkele, T. E. Mürdter and M. Letzel, Environ. Sci. Technol., 43(9), 3135-3141(2009).

16

16. K. Stoob, H. P. Singer, C. W. Goetz, M. Ruff and S. R. Mueller, J. Chromatogr. A., 1097, 138-147(2005).

17

17. M. J. García-Galán, T. Garrido, J. Fraile, A. Ginebreda, M. S. Díaz-Cruz and D. Barceló, J. Hydrol., 383, 93- 101(2010).

18

18. 국립환경과학원, “환경 중 의약물질 분석방법 연구 및 노출실태조사(II)”, 2007.

19

19. 국립환경과학원, “잔류의약물질 분석방법 연구 및 실태조사(I)”, 2008.

20

20. 국립환경과학원, “환경 중 의약물질 배출원 조사 및 거동연구(I)”, 2008.

21

21. C. L. Lin, Y. J. Cheng, H. Y. Huang and S. Lee, Electrophoresis, 30, 3828-3837(2009).

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