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1992 | 39 | 4 |

Tytuł artykułu

The effect of an experimental neoplastic disease on the flux of sodium and potassium ions across red blood cells and on the lipid composition of their membranes

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The erythrocytes from Morris Hepatoma 5123 bearing rats took up Na+ and K+ ions from the incubation medium and released Na into the extracellular space at lower rates than did erythrocytes from intact control rats* The lipid composition of erythrocytes membranes from the tumor-bearing rats differed from that of membranes from unaffected rats, showing increased contents of phospholipid phosphorus and a decreased content of cholesterol, resulting in decreased choleste- rol: phospholipid molar ratios.

Wydawca

-

Rocznik

Tom

39

Numer

4

Opis fizyczny

p.317-326,fig.

Twórcy

autor
  • Medical Academy, Swiecickiego 6, 60-781 Poznan, Poland
autor
autor

Bibliografia

  • 1. Warchoł, T. (1975) The influence of transplantable Morris Hepatoma on the pen- tosephosphate cycle in rat erythrocyte. Arm. Med. Sect. Pol. Acad. Sci., 20,39 - 46.
  • 2. Torlitlski, L. (1972) Hexokinase and aldolase activities of erythrocytes in various stage of development of transplantable Morris Hepatoma 5123. Ann. Med. Sect. Pol, Acad. ScL, 18,233 - 248.
  • 3. Green, H N., Anthony, H. N., Baldwin, R. W, & Westrop, J. W. (1967) An immunologi­cal approach to cancer. Butterworth, London.
  • 4. Claret, M., Garay, R. P. & Giraud, F. (1978) The effect of membrane cholesterol on the sodium pump in red blood cells. J. Physiol274,247 - 263.
  • 5. Giraud, F., Claret, M., Bruckdorfer, K,R, & Chailley, B. (1981) The effect of membrane lipid order and cholesterol on the internal and external cationic sites of the Na+ - K+ pump in erythrocytes. Biochim. Biophys. Acta, 647,249 - 258.
  • 6. Robertson, J. D. (1981) Membrane structure. J. Cell Biol, 91,3, PL 2,189s - 204s.
  • 7. Malhotra, S. (1983) The plasma membrane. Wiley, New York.
  • 8. Giese, A. C. (1979) Cell Physiology. W. B. Saunders Company, Philadelphia.
  • 9. Wiley, J. S. & Cooper, R. A. (1975) Inhibition of cation cotranspoit by cholesterol enrichment of human red cell membranes. Biochim. Biophys. Acta, 43,425 - 431.
  • 10. Deaal, J. E., Shah, V., Goodenough, G. & Dillon, M. J. (1990) Red cell membranes sodium transport: possible genetic role and use in identifying patients at risk of essential hypertension. Arch. Dis. Child., 65,154 -157.
  • 11. Mourelle, M„ France, M. T. (1991) Erythrocyte defects preceed the onset of CC 14-induced liver cirrhosis. Protection by silymarin. Life Sci., 48, 1083 - 1090.
  • 12. Afift, F. (1985) Some red blood cell abnormalities in patients with liver cirrhosis and ascites. I. Red blood cell sodium, potassium and water content. Tohoku J. Exp. Med., 145, 7-14.
  • 13. Dowben, R. H. & Hollye, K. R. (1959) Erythrocyte electrolytes in muscle disease. J. Lab. Clin. Med., 54,867 - 870.
  • 14. Corrocher, R., Bassi, A., Gandmi, A., Guanni, P., Trevisan, M. T., Schena, D., Olivieri, O., Ferrari, S. (1989) Transmembrane cation fluxes and fatty acid composition of erythro­cytes in psoriatic patients. Clin. Chim. Acta, 186,335 - 344.
  • 15. Owen, J. S. & Mc In tyre, N. (1978) Erythrocyte lipid composition and sodium transport in human disease. Biochim. Biophys. Acta, 510,168 - 176.
  • 16. Preiss, J., Prunike, H. J., Sohr, R., Miiller, E., Schmeck, G., Schmidt, J., Banaschak, H. (1982) Sodium flux and lipid spectrum in the erythrocyte membranes in essential hyper­tension. J. Clin. Pharm. Therapy Toxicol., 20,105-112.
  • 17. Glynn, J. M, (1956) Sodium and potassium movements in human red cells. J. Physiol. (London), 134,278 - 310.
  • 18. Garrahan, P. J, & Glynn, J. M. (1967) Hie behaviour of the sodium pump in red cells in the absence of external potassium. J. Physiol. (London), 192, 159 -174.
  • 19. Dodge, J. T., Mitchell, C. & Hanachn, J, (1963) The preparation and chemical characteristics of hemoglobin-free ghosts of human erythrocytes. Arch. Biochem. Biophys., 100,119 -130,
  • 20. Kates, M. (1975) Techniques in lipidology. North-Holland, Amsterdam.
  • 21. Zlatkis, A. & Zak, B. (1969) Study of new cholesterol reagent. Anal Biochem., 29, 143 -148.
  • 22. Bartlett, G. R. (1959) Phosphorus assay in column chromatography. J. Biol. Chem., 234,466 - 468.
  • 23. Kroes, J. & Ostwald, R. (1971) Erythrocyte membranes-effect of increased cholesterol contents on permeability. Biochim. Biophys. Acta, 249,647 - 650.
  • 24. Engelmann, B., Op den Kamp., J. A. F. & Roelofsen, B, (1990) Replacement of molecular species of phosphatidylcholine influence on erythroctye Na+ transport. Am. J. Physiol., 258, c682 - c691.
  • 25. Roelofsen, B. & Van Deenen, L. L. M. (1973) Lipid requirement of membrane- bound ATP-ase. Studies on human erythrocyte ghosts. Eur. J. Biochem., 40,245 - 257.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-98a03f96-a471-406d-9bf8-c4e392480ff2
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