Proton fluxes associated with erythrocyte membrane anion exchange

[1]  W. Wilbrandt Untersuchungen über langsamen Anionenaustausch durch die Erythrocytenmembran , 1942, Pflüger's Archiv für die gesamte Physiologie des Menschen und der Tiere.

[2]  W. Gruber,et al.  Comparative aspects of phosphate transfer across mammalian erythrocyte membranes , 1973, The Journal of Membrane Biology.

[3]  S. McLaughlin The mechanism of action of DNP on phospholipid bilayer membranes , 1972, The Journal of Membrane Biology.

[4]  H. Passow,et al.  The permeability of the human red blood cell to sulfate ions , 1971, The Journal of Membrane Biology.

[5]  E. Lea,et al.  The effect of 2,4-dinitrophenol on the properties of thin phospholipid films , 1969, The Journal of Membrane Biology.

[6]  M. H. Jacobs,et al.  Is the erythrocyte permeable to hydrogen ions? , 1932, Protoplasma.

[7]  A. Rothstein,et al.  Membrane proteins related to anion permeability of human red blood cells , 2005, The Journal of Membrane Biology.

[8]  H. Passow,et al.  Kinetik und Gleichgewichte bei der langsamen Anionenpermeabilität roter Blutkörperchen , 2004, Pflüger's Archiv für die gesamte Physiologie des Menschen und der Tiere.

[9]  P. G. Wood,et al.  Current concepts of the mechanism of anion permeability , 1973 .

[10]  M. Dalmark,et al.  Temperature dependence of chloride, bromide, iodide, thiocyanate and salicylate transport in human red cells , 1972, The Journal of physiology.

[11]  M. Ro̸rth,et al.  Oxygen affinity of hemoglobin and red cell acid base status : proceedings of the Alfred Benzon symposium IV held at the premises of the Royal Danish Academy of Sciences and Letters, Copenhagen 17-22 May, 1971 , 1972 .

[12]  Hunter Mj A quantitative estimate of the non-exchange-restricted chloride permeability of the human red cell. , 1971 .

[13]  M. J. Hunter A quantitative estimate of the non-exchange-restricted chloride permeability of the human red cell. , 1971, The Journal of physiology.

[14]  G. Azzone,et al.  The mechanism of anion translocation and pH equilibration in erythrocytes. , 1970, Biochimica et biophysica acta.

[15]  A. Omachi Sulfate Transport in Human Red Cells: Inhibition by Some Uncouplers of Oxidative Phosphorylation , 1964, Science.

[16]  J. Severinghaus,et al.  Accuracy of blood pH and PCO2 determinations. , 1956, Journal of applied physiology.

[17]  M. H. Jacobs,et al.  THE ROLE OF CARBONIC ANHYDRASE IN CERTAIN IONIC EXCHANGES INVOLVING THE ERYTHROCYTE , 1942, The Journal of general physiology.

[18]  A. Parpart PERMEABILITY OF THE ERYTHROCYTE FOR ANIONS , 1940 .

[19]  D. V. Slyke,et al.  STUDIES OF GAS AND ELECTROLYTE EQUILIBRIA IN BLOOD X. THE SOLUBILITY OF CARBON DIOXIDE AT 38° IN WATER, SALT SOLUTION, SERUM, AND BLOOD CELLS , 1928 .

[20]  D. D. Van Slyke,et al.  STUDIES OF GAS AND ELECTROLYTE EQUILIBRIA IN THE BLOOD , 1927, The Journal of general physiology.