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Role Of pH In Functioning Of Na+-Ca2+ Exchanger In Secretory Cell Plasma Membrane

OLGA LARINA(1), Volodimir Manko(2)
(1)DEPARTMENT OF HUMAN AND ANIMAL PHYSIOLOGY. I.FRANKO LVIV NATIONAL UNIVERSITY - LVIV . Ukraine
(2)Dept. Of Human and Animal Phisiology. I. Franko Lviv National University - Lviv. Ukraine

[ABSTRACT] [INTRODUCTION] [METHODS] [RESULTS] [IMAGES] [DISCUSSION] [CONCLUSIONS] [REFERENCES] [Discussion Board]
CONCLUSIONS Previous: Vestibular Evoked Potentials with Caloric Stimulation ABSTRACT
[Endocrinology]
Next: Effects of ethanol on aminopeptidase A in cortical synaptosomes.
[Physiology]
Next: Effects of ethanol on brain aminopeptidase activities under basal and K+-stimulated conditions.

REFERENCES

  1. Baker P.F. (1972). Transport and metabolism of calcium ions in nerve. Progress in Biophysics and Molecular Biology. 24:177-223.

  2. Baker, P.F. (1986). The sodium-calcium exchange system / Calcium and cell. - Wiley, Chichester. P. 73-86.

  3. Baker, P.F., Blaustein, M.P. (1968). Sodium-dependent uptake of calcium by crab nerve. Biochim. Biophisica acta. 150:167-170.

  4. Bayerdoffer, E., Haase, W., Schulz, I. (1985). Countertransport in plasma membrane of rat pancreatic acinar cells. J. Membrane Biol. 87,2:107-119.

  5. Blaustein, M.P. (1974). The interrelationship between sodium and calcium fluxes across cell membranes. Rev. Phisiol. Biochem. Pharmacol. 70:33-88.

  6. Blaustein, M.P., Hodgkin, A.L. (1969). The effect of cyanide on the efflux of calcium from squid axons. J.Physiol. (London) 200:497-527.

  7. Blaustein, M.P., Nelson, M.T. (1982). Sodium-calcium exchange: its role in regulation of cell calcium. Membrane transport of calcium / Eds.E.Carafoli. - London; New York: Acad. Press. P. 217-236.

  8. Doering, A.E., Lederer, W.J. (1991a). Cytoplasmic acidity inhibits sodium-calcium exchange in cardiac cells. Biophysical Journal. 59:544a.

  9. Doering, A.E., Lederer, W.J. (1991b). Voltage-dependent block of the Na-Ca exchanger in heart muscle examined using giant excised patches from guinea-pig cardiac myocytes. Annals of the N.Y. Academy of Sciences. 639:172-176.

  10. Doering, A.E., Lederer, W.J. (1993). The mechanism by which cytoplasmic protons inhibit the sodium-calcium exchanger in guinea-pig heart cells. J. Phisiol. 466:481-499.

  11. Doering, A.E., Lederer, W.J. (1994). The action of Na+ as a cofactor in the inhibition by cytoplasmic protons of the cardiac Na+-Ca2+exchanger in the guinea-pig. J. Phisiol. 480,1:9-20.

  12. Fedirko, N., Klevets, M., Manko, V. (1997). Dependence of Na-Ca-exchange current amplitude of secretory cell membrane on extracellular Ca2+ concentration. Europ.Biophys.J. with Biophys.Letters. 26(1):79.

  13. Glitsch, H.G., Reuter, H., Scholr H. (1970). The effect of internal sodium concentration on calcium fluxes in isolated guinea pig vesicles. J.Physiol. (London) 209:25-43.

  14. Grinkiv, М., Klevets, М., Shostakovskaya, I. (1988). Role of calcium in extrusion of digestive enzymes by pancreatic acinar cells. J.Physiol. (Ukraine). 34(4):13-17.

  15. Klevets, M., Manko, V., Fedirko, N. (1995). Investigation of secretory cell membrane Na-Ca exchange current. Reports of Ukrainian National Academy of Sciences. 11:123-126

  16. Klevets, M., Manko, V., Fedirko, N. (1996). Dependence of sodium-calcium exchange through salivary gland secretory cell plasma membrane in Chironomus plumosus larva on pH of extracellular solution. Neurophysiology. (Ukraine). 28(4/5):193-196

  17. Manko, V., Klevets, M., Fedirko, N. (1995). Identification of Na-Ca exchange current in secretory cell membrane. Pflugers Arch. J. Physiol. 430(4):R138.

  18. Philipson, K.D., Bersohn, M.M., Nishimoto, A.Y. (1982). Effects of pH on Na+-Ca2+-exchange in canine cardiac sarcolemmal vesicles. Circ. Res. 50:287-293.

  19. Reuter, H., Seitz, N. (1968). The dependence of calcium efflux from cardiac muscle on temperature and external ion composition. J. Physiol.195:451-470.


Discussion Board
Discussion Board

Any Comment to this presentation?

[ABSTRACT] [INTRODUCTION] [METHODS] [RESULTS] [IMAGES] [DISCUSSION] [CONCLUSIONS] [REFERENCES] [Discussion Board]

CONCLUSIONS Previous: Vestibular Evoked Potentials with Caloric Stimulation ABSTRACT
[Endocrinology]
Next: Effects of ethanol on aminopeptidase A in cortical synaptosomes.
[Physiology]
Next: Effects of ethanol on brain aminopeptidase activities under basal and K+-stimulated conditions.
OLGA LARINA, Volodimir Manko
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