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Distribution of Fluoroquinolones in the Carp (Cyprinus carpio) and Eel (Anguilla japonica) following their Oral Administration

양식 잉어 및 뱀장어에 경구투 fluoroquinolone계 항생제의 체내 잔류량의 변화

  • 조미라 (국립수산과학원 남서해수산연구소) ;
  • 박큰바위 (국립수산과학원 남서해수산연구소) ;
  • 이희정 (국립수산과학원 남서해수산연구소) ;
  • 김지회 (국립수산과학원 남동해수산연구소) ;
  • 이태식 (국립수산과학원 서해수산연구소) ;
  • 정승희 (국립수산과학원 전략양식연구소) ;
  • 이두석 (국립수산과학원 식품안전과) ;
  • 윤호동 (국립수산과학원 식품안전과) ;
  • 김풍호 (국립수산과학원 식품안전과)
  • Received : 2010.09.06
  • Accepted : 2010.12.03
  • Published : 2010.12.31

Abstract

The distribution of fluoroquinolones was investigated in the carp (Cyprinus carpio) and eel (Anguilla japonica) after an oral dose of 20 mg/kg body weight/day for 35 days. Blood samples were collected at 5 and 10 hours and 1, 2, 3, 5, 7, 9, 13, 20, 30, and 35 days after treatment. The fluoroquinolone concentrations were determined high- performance liquid chromatography with an ultraviolet detector. The recovery rates of fluoroquinolones in the fish samples ranged from 91.4-96.6, 91.2-96.5, and 90.4-98.6% for concentrations of 0.1, 0.5, and $1.0\;{\mu}g/g$, respectively. In the blood of carp, ciprofloxacin, enrofloxacin, norfloxacin, and sarafloxacin reached maximums level of 11.03, 9.37, 9.10, and $9.81\;{\mu}g/g$ 10 hours, 1 day, 10 hours, and 10 hours after treatment, respectively. In the eel blood, these reached maximum levels of 12.65, 11.18, 11.91, and $8.74\;{\mu}g/g$ all at 10 hours. Carp sample concentrations of ciprofloxacin, enrofloxacin, norfloxacin, and sarafloxacin were not measurable 20, 30, 20, and 20 days after treatment, respectively, in all experiments (

Keywords

References

  1. Bowser PR, Wooster GA, Stleger J and Babish JG. 1992. Pharmacokinetics of enrofloxacin in fingerling rainbow trout (Oncorgynchus mykiss). J Vet Pharmaco Therap 15, 62-71. https://doi.org/10.1111/j.1365-2885.1992.tb00987.x
  2. Causon R. 1997. Validation of chromatographic methods in biomedical analysis viewpoint and discussion. J Chromatogr B 689, 175-180. https://doi.org/10.1016/S0378-4347(96)00297-6
  3. Chevalier R, Gerald JP and Michel C. 1981. Distribution et cinetique tissulaire de la flumequine chez truite arc-en-ciel (salmo gairdneri, Richardson). Recherche de residus. Rev Med Vet 132, 831.
  4. Figosos PG., Revesado PR, Cadahia O, Fente CA, Vazquez BI, Franco CM, Cepeda A. 2000. Determination of quinolones in animal tissues and eggs by high-performance liquid chromatography with photodiode-array detection. J Chromatog A 871, 31-36. https://doi.org/10.1016/S0021-9673(99)01048-1
  5. Herikstad H, Hayers P, Mokhtar M, Fracaro ML, Threlfall EJ and Angulo FJ. 1997. Emerging quinoloneresistant Salmonella in the USA. Emerg Infect Dis 3, 371-372. https://doi.org/10.3201/eid0303.970316
  6. Heo GJ, Shin KS and Lee MH. 1992. Diseases of aquaculture animals and prevention of drug residues. Kor J Food Hyg 7, S7-S19.
  7. Ho SP, Cheng CF and Wang WS. 1999. Pharmacokinetic and depletion studies of sarafloxacin after oral administration to eel (Anguilla anguilla). J Vet Med Sci 61, 459-463. https://doi.org/10.1292/jvms.61.459
  8. Kasuga Y, Sugitani A, Yamada F, Arai M and Morikawa S. 1984. Oxolinic acid residues in tissues of cultured rainbow trout and ayu fish. J Food Hyg Soc Jpn 25, 512-615. https://doi.org/10.3358/shokueishi.25.512
  9. Kim PH, Lee DS, Kim JW, Park MS, Kim DS and Jo MR. 2009. Residues of fluoroquinolones in Olive flounder (Paralichthys olivaceus) and Black Rockfish (Sebastes schlegeli) following oral administration. Kor J Fish Aquat Sci 42, 329-334. https://doi.org/10.5657/kfas.2009.42.4.329
  10. Nouws JF, Grondel JL, Schutte AR and Laurensen J. 1998. Pharmacokinetics of ciprofloxacin in carp, African catfish and rainbow trout. Vet Qrart 10, 211-216.
  11. Park SC, Yun HI and Oh TK. 1996. Comparative pharmacokinetics and tissue distribution of norfloxacin-glycine acetate in flounder, (Paralichthys olivaceus) at two different temperatures. J Vet Med Sci 58, 1039-1040. https://doi.org/10.1292/jvms.58.10_1039
  12. Intorre L, Cecchini S, Bertini S, Cognetti Varriale AM, Soldani G and Mengozzi G. 2000. Pharmacokinetics of enrofloxacin in the seabass (Dicentrarchus labrax). Aquaculture 182, 49-59. https://doi.org/10.1016/S0044-8486(99)00253-7
  13. Martinsen B. and Horsberg E. 1995. Comparative singledose pharmacokinetics of four quinolones, oxolinic acid, flumequine, sarafloxacin and enrofloxacin, in Atlantic Salmon (Salmo salar) held in seawater at 10${^{\circ}C}$. Antimicrob Agents Chemother 39, 1059-1064. https://doi.org/10.1128/AAC.39.5.1059
  14. Markwardt MN and Klontz GW. 1998. A method to eliminate the symptomatic carrier state of Aeromonas salmonicida in salmonids. J Fish Dis 12, 317.
  15. Nouws JP, Grondel JL, Schutte AR and Laurensen J. 1988. Pharmacokinetics of ciprofloxacin in carp, African catfish and rainbow trout. Vet Q 10, 211-216. https://doi.org/10.1080/01652176.1988.9694173
  16. Posyniak A, Zumdzki J, Semeniuk S, Niedzielska J and Eillis R. 1999. Determination of fluoroquinolone residues in animal tissues by liquid chromatography. Biomed Chromatogr 13, 279-285. https://doi.org/10.1002/(SICI)1099-0801(199906)13:4<279::AID-BMC844>3.0.CO;2-A
  17. Smith KE, Besser JM, Hedberg CW, Leano FT, Bender JB, Wicklund JH, Johnson BP, Moore KA and Osterholm MT. 2003. Quinolone-resistant Campylobacter jejumi infections in Minnesota. New Engl J Med 340, 1525-1532.
  18. Treves-Brown KM. 2000. Appiled fish pharmacology. Charpter 10. Quinolones and Fluoroquinolones. Kluwer Academic publishers, London, U.K., 117-142.
  19. Xu W, Zhu X, Wang X, Deng L and Zhang G. 2006. Residues of enrofloxacin, furazolidone and their metabolites in Nile tilapia (Oreochromis niloticus). Aquaculture 254, 1-8. https://doi.org/10.1016/j.aquaculture.2005.10.030

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