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Original Article

Non-Ionic Diffusion of Some Organic Bases Through Cellular Membranes

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Pages 388-394 | Received 25 Apr 1963, Published online: 08 Jul 2009

References

  • Bates R. G. Amine buffers for pH control. Ann. N.Y. Acad. Sci. 1961; 92: 341
  • Brinkman G. L., Brunswick W. L., Whitehouse F. W. The use of 2-amino-2-hydroxyinethyl-1,3-propanediol in the correction of metabolic and respiratory acidosis. Ibid. 1961; 92: 743
  • Brown E. S., Greene D. G., Elam J. O., Evers J. L., Runcll I. L., Lowe H. J. Efects of 2-amino-2-hydroxymethyl-1,3-propanediol on CO2 elimination and production in normal man. Ibid. 1961; 92: 508
  • Conant J. S., Hughes R. E. The usefulness of THAM in metabolic acidosis. Ibid. 1961; 92: 751
  • Holmdahl M. H, Nahas G. G. Volume of distribution of C14 tagged 2-amino-2-hydroxy-methyl-1,3-propanediol (THAM). Fed. Proc. 1961; 20
  • Hassam D., Verosky M. Acid-base changes in the cerebrospinal fluid following rapid changes in the bicarbonate/carbonic acid ratio in the blood. Ann. N.Y. Acad. Sci. 1961; 92: 520
  • Jørgensen K., Astrup P. The effect of Z-amino-2-hydroxymethyl-1,3-propanediol on blood-buffering capacity. Ibid. 1961; 92: 491
  • Kibler R. F., O'Neill R. P., Robin E. D. Brain intracellular acid-base relations with reference to brain extracellular volume (ECF). Clin. Res. 1963; 11: 29
  • Luchsinger P. C. The use of 2-amino-2-hydroxy-methyl-1,3-propanediol in the management of respiratory acidosis. Ann. N.Y. Acad. Sci. 1961; 92: 743
  • Mellemgaard K., Astrup P. The quantitative determination of surplus amounts of acid or base in the human body. Scand. J. clin. Lab. Invest. 1960; 12: 187
  • Milne M. D., Scribner B. H., Crawford M. A. Non-ionic diffusion and the excretion of weak acids and bases. Amer. J. Med. 1958; 24: 709
  • Nahas G. G., Jordan E. C., Ligou J. C. Effects of a 'CO2 buffer' on hypercapnia of apneic oxygenation. Amer. J. Physiol. 1959; 197: 1308
  • Omachi A., Mackey R. I., Waldeck J. G. Permeability of cell membranes to amine buffers and their effects on electrolyte transport. Ann. N.Y. Acad. Sci. 1961; 92: 478
  • Peirce E. C. Effects of 2-amino-2-hydroxy-methyl-1,3-propanediol (Tris) during cardiac bypass procedures. Ibid. 1961; 92: 765
  • Rees S. B., Younger M. D., Freedlender A. E. Some in. vim and itz vitro observations on the effects of tris(hydroxymethyl)aminomethane in diabetic acidosis. Ibid. 1961; 92: 755
  • Robin E. D., Wilson R. J., Bromberg Ph. A. Intracellular acid-base relations and intracellular buffers. Ibid. 1961; 92: 539
  • Saimy A. H., Ramsay A. G., Rees S. B., Merril J. P. The use of 2-amino-2-hydroxymethyl-1,3-propanediol in the management of renal acidosis. Ibid. 1961; 92: 802
  • Sieker H. O., Merwarth C. R., Salteman H. A., Manfredi F. The use of 2-amino-2-hydroxymethyl-1,3-propanediol in severe carbon dioxide intoxication. Ibid. 1961; 92: 783
  • Siggaard Andersen O., Engel K., Jørgensen K., Astrup P. A micro method for determination of pH, carbondioxide tension, base excess and standard bicarbonate in capillary blood. Scand. J. clin. Lab. Invest. 1960; 12: 172
  • Warren K. S., Nathan D. G. The passage of ammonia across the blood-brain barrier and its relation to blood pH. J. clin. Invest. 1958; 37: 1724
  • Wissenschaftlichen Tabellen Statistik und Medizin. Documenta Geigy, 5. Auflage 1955; 43

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