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1996 | 43 | 2 |

Tytuł artykułu

The activities of superoxide dismutase, catalase, glutathione peroxidase and glutathione reductase in erythrocytes of rats with experimental neoplastic disease

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
In erythrocytes of rats bearing Morris hepatoma 5123 the activities of superoxide dismutase, glutathione peroxidase and glutathione reductase as well as the level of reduced glutathione increased on the 10th day after transplantation of the tumor. In the second phase of the tumor growth (20 days after transplantation), the activities of glutathione peroxidase, glutathione reductase and the level of reduced glutathione in erythrocytes of the experimental animals were lower than in controls, whereas the activity of superoxide dismutase was at that time higher than in controls. On the other hand, the activity of catalase did not significantly differ from that found in healthy rats.

Wydawca

-

Rocznik

Tom

43

Numer

2

Opis fizyczny

p.403-405

Twórcy

autor
  • University of Medical Sciences, Swiecickiego 6, 60-781 Poznan, Poland
autor
autor

Bibliografia

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  • 2. Olivieri, O., Gireili, D., Trevisan, M.T., Bassi, A., Zorzan, P., Bambara, LM. & Coroeher, R. (1991) J. Rheumatol. 18,1265-1264.
  • 3. Descamps-Latscha, B., Nguyen, A.T., Golub, R., Baruchel, A., Debray-Sachs, M. & Assan, R. (1984) in Oxygen Radicals in Chemistry and Biology (Bors, W., Saran, M. & Tait, D., eds.) pp. 965-968, Walter de Gruyter, Berlin.
  • 4. Bhuyan, D. & Bhuyan, K. (1983) in Oxy Radicals and Their Scavenger Systems Cellular and Medical Aspects (Greenwald, R.A. & Cohen, G., eds.) pp. 343-348, Elsevier Biomedical Press, Amsterdam.
  • 5. Murakami, K., Kondo, T., Ohtsuka, Y., Fuji- wara, Y., Shimada, M. & Kawakami, Y. (1989) Metabolism 38,753-758.
  • 6. Concetti, A., Massei, P., Rotilio, G., Brunori, M. & Rachmilewitz, E.A. (1976) J. Lab. Clin. Med. 87, 1057-1054.
  • 7. Gerli, G.C., Beretta, L., Pellegata, A. & Agostini, A. (1980) Scand. J. Haematol. 25,87-92.
  • 8. Das, S.K. & Nair, R.C. (1980) Br. /. Haematol. 44, 87-92.
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  • 10. Percy, E.M., Dalton, A.J., Marcovic, V.D., Crapper Mc Lachlan, D.R., Hummel, J.T., Rusk, A.C.M. & Andrews, D.F. (1990) Am. J. Med. Genet. 35,459-467.
  • 11. Torlinski, L (1972) Ann. Med. Sect. Pol. Acad. Sci. 18, 233-248.
  • 12. Beauchamp, Ch. & Fridovich, I. (1971) Anal. Biochem. 44,276-287.
  • 13. Beutler, E. (1984) in Red Cell Metabolism; 3d edn. pp. 89-90, Grune & Stratton, Philadelphia.
  • 14. Paglia, D.E. & Valentine, W.N. (1967)}. lab. Clin. Med. 70,158-169.
  • 15. Benohr, H. Chr., Tigges, F.J. & Waller, H.D. (1974) Klin. Wschr. 52,474-477.
  • 16. Anderson, M.E. (1985) Methods Cnzymol. 113, 548-555.
  • 17. Drabkin, D.L & Austin, J.M. (1935) J. Biol. Chem. 112,52-65.
  • 18. Fujii, S., Dale, G.L. & Beutler, E. (1984) Blood 63, 1096-1101.
  • 19. Gonzales, R., Auclair, Ch., Voisin, E., Gautero, H., Dhermy, D. & Boivin, P. (1984) Cancer Res. 44, 4137-4139.
  • 20. Warchol, T. (1975) Ann. Med. Sect. Pol. Acad. Sci. 20, 39-46.
  • 21. Batko, J., Plotast-Necas, B., Warchot, T. & Karon, H. (1992) Acta Biochim. Polon. 39,317-326.
  • 22. Batko, J. & Karon, H. (1994) Acta Biochim. Polon. 41,13-16.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-96075a5b-f177-41db-b60d-288b23465b68
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