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Tytuł artykułu

Investigation of nicotine transformation products by densitometric TLC and GC-MS

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Samples of nicotine were exposed to air and UV light and the products formed were separated by TLC on RP-18 with acetonitrile-water, 88:12 (v/v), as mobile phase. GC-MS analysis was also performed to confirm the identities of the nicotine transformation products. Cotinine, reported to be one of the main products resulting from the action of environmental agents on nicotine, was identified, as was nicotyrine. The results obtained were compared with nicotine biotransformation products identified in urine from children and pregnant women. trans-3'-Hydroxy-cotinine was identified in these samples but was absent from the products formed by exposure of nicotine to air.
Słowa kluczowe
Rocznik
Tom
Strony
154--160
Opis fizyczny
Bibliogr. 15 poz., tab.
Twórcy
autor
  • Department of Chemistry, Faculty of Medicine, Medical University of Silesia, Jordana 19, 41-808 Zabrze, Poland
autor
  • Department of Chemistry, Faculty of Medicine, Medical University of Silesia, Jordana 19, 41-808 Zabrze, Poland
  • Department of Chemistry, Faculty of Medicine, Medical University of Silesia, Jordana 19, 41-808 Zabrze, Poland
autor
  • Department of Chemistry, Faculty of Medicine, Medical University of Silesia, Jordana 19, 41-808 Zabrze, Poland
  • Department of Chemistry, Faculty of Medicine, Medical University of Silesia, Jordana 19, 41-808 Zabrze, Poland
autor
  • Department of Chemistry, Faculty of Medicine, Medical University of Silesia, Jordana 19, 41-808 Zabrze, Poland
autor
  • Department of Chemistry, Faculty of Medicine, Medical University of Silesia, Jordana 19, 41-808 Zabrze, Poland
Bibliografia
  • [1] W. Jędrychowski and E. Flak, Environ. Health Perspect., 105, 302 (1997)
  • [2] B. Eskenazi and J.J. Bergmann, Am. J. Public Health, 142, 10 (1995)
  • [3] L.A. Mooney, R.M. Santella, L. Covey, A.M. Jeffrey, W. Bigbee, M.C. Randall, T.B. Cooper, R. Ottman, W.-Y. Tsai, L. Wazneh , A.H. Glassman, T.-L. Young, and F.P. Perera, Cancer Epidemiol. Biomarkers Prev., 4, 627 (1995)
  • [4] B. Eskenazi and L.S. Trupin, Am. J. Pub. Health, 142, 19 (1995)
  • [5] C. Malaveille, P. Vineis, J. Esteve, H. Ohshima, G. Brun, A. Hautefeuile, P. Galet, G. Ronco, B. Terracini, and H. Bartsch, Carcinogenesis, 10, 577 (1989)
  • [6] J. Allena, G.M. Lawson, R. Anderson, L.C. Dale, I.T. Groghan, and R.D. Hurt, Clin. Chem., 45, 85 (1999)
  • [7] G. Scherer, Human Environ. Toxicol., 16, 449 (1997)
  • [8] G.A. Kyerematen and E.S. Vesell, Drug Metab. Rev., 23, 3 (1991)
  • [9] K. Tyrpień, Metabolizm nikotyny, Bromat. Chem. Toksykol., 35, 17 (2002)
  • [10] G.D. Byrd, R.A. Davis, W.L. Caldwell, and J.D. deBethizy, Psychopharmacology, 139, 291 (1998)
  • [11] G. Grimer, G. Hilge, and W. Niemitz, Vom Wasser, 54, 255 (1980)
  • [12] X. Xu and L.Wang, Arch. Environ. Health, 53, 44 (1998)
  • [13] K. Tyrpień, T. Wielkoszyński, C. Dobosz, B. Janoszka, D. Bodzek, and Z. Stęplewski, J. Chromatogr. A, 870, 29 (2000)
  • [14] K. Tyrpień, P. Bodzek, and G. Mańka, Biomed. Chromatogr., 15, 50 (2001)
  • [15] Dyeing Reagents for Thin Layer and Paper Chromatography, E. Merck, Darmstadt, Germany, 1980
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT3-0026-0053
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