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Original Article

Determination of Sodium, Potassium, and Water in Human Red Blood Cells: Elimination of Sources of Error in the Development of a Flame Photometric Method

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Pages 151-166 | Received 12 Sep 1965, Published online: 13 May 2010

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Read on this site (4)

J. Funder & J. O. Wieth. (1974) Human Red Cell Sodium and Potassium in Metabolic Alkalosis. Scandinavian Journal of Clinical and Laboratory Investigation 34:1, pages 49-59.
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J. Astrup. (1974) Sodium and Potassium in Human Red Cells Variations among Centrifuged Cells. Scandinavian Journal of Clinical and Laboratory Investigation 33:3, pages 231-237.
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J. Funder & J. O. Wieth. (1974) Combined Effects of Digitalis Therapy and of Plasma Bicarbonate on Human Red Cell Sodium and Potassium. Scandinavian Journal of Clinical and Laboratory Investigation 34:2, pages 153-160.
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J. Funder & J. O. Wieth. (1966) Potassium, Sodium, and Water in Normal Human red Blood Cells. Scandinavian Journal of Clinical and Laboratory Investigation 18:2, pages 167-180.
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Articles from other publishers (35)

Jeffrey C. Freedman. 2012. Cell Physiology Source Book. Cell Physiology Source Book 3 17 .
Haruki Higashimori, Thomas P. Whetzel & Richard C. Carlsen. (2008) Inhibition of inducible nitric oxide synthase reduces an acute peripheral motor neuropathy produced by dermal burn injury in mice. Journal of the Peripheral Nervous System 13:4, pages 289-298.
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Haruki Higashimori, Thomas P. Whetzel, Tamara Mahmood & Richard C. Carlsen. (2005) Peripheral axon caliber and conduction velocity are decreased after burn injury in mice. Muscle & Nerve 31:5, pages 610-620.
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Jeffrey C. Freedman. 2001. Cell Physiology Source Book. Cell Physiology Source Book 3 15 .
Richard T. Timmer & Robert B. Gunn. (2000) The Molecular Basis for Na-Dependent Phosphate Transport in Human Erythrocytes and K562 Cells. The Journal of General Physiology 116:3, pages 363-378.
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Christian Lytle, Thomas J. McManus & Mark Haas. (1998) A model of Na-K-2Cl cotransport based on ordered ion binding and glide symmetry. American Journal of Physiology-Cell Physiology 274:2, pages C299-C309.
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Yasutaka Matsuo, Fumio Inoue, Hiroshi Yoshioka, Akihiko Kinugasa, Makoto Uchiyama & Tadashi Sawada. (1995) Changes of erythrocyte ouabain maximum binding after birth in neonates — in relation to erythrocyte sodium and potassium concentrations. Early Human Development 43:1, pages 59-69.
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Jeffrey C. Freedman. 1995. Cell Physiology Source Book. Cell Physiology Source Book 3 17 .
Arthur W. Rowe. (2011) Primates: Models for red cell transfusion studies—Cryopreservation and survival of transfused red cells in primates. Journal of Medical Primatology 23:8, pages 415-425.
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R. G. BOUTILIER, M. NIKINMAA & B. L. TUFTS. (2008) Relationship between blood buffering properties, erythrocyte pH and water content, in gray seals ( Halichoerus grypus ) . Acta Physiologica Scandinavica 147:2, pages 241-247.
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Per G. Söderberg, Enping Chen & Bo Lindström. (2009) Determination of Na and K in the rat lens by atomic absorption spectrophotometry. Acta Ophthalmologica 67:5, pages 582-592.
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Dietlinde Büttner & Johannes Büttner. (1989) Methods for pH Determination in Human Erythrocytes. Clinical Chemistry and Laboratory Medicine 27:2.
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Barrett E. Cowan, Daniel Y. Sze, Michael T. Mai & Oleg Jardetzky. (1985) Measurement of the sodium membrane potential by NMR. FEBS Letters 184:1, pages 130-133.
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Peter L. Weissberg, Margaret J. West & Kent L. Woods. (1983) An improved method for measuring intracellular electrolytes m erythrocytes and the effects of cold storage. Clinica Chimica Acta 129:1, pages 85-89.
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Peter M. Cala, Jens G. Nørby & Daniel C. Tosteson. (1982) Effects of the plant alkaloid sanguinarine on cation transport by human red blood cells and lipid bilayer membranes. The Journal of Membrane Biology 64:1-2, pages 23-31.
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Werner Skipka & Jürgen StegemannWerner Skipka & Jürgen Stegemann. 1982. Die Bedeutung des Nebennierenrindenhormons Aldosteron für die physische Leistungsfähigkeit. Die Bedeutung des Nebennierenrindenhormons Aldosteron für die physische Leistungsfähigkeit 104 142 .
A.Martin M. Zade-Oppen. (1980) A note on osmotic pressure measured with ionophore treated red blood cells. Biophysical Chemistry 12:1, pages 57-61.
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A.Martin M. Zade-Oppen, James M. SchoolerJr.Jr., Paul Cook & Daniel C. Tosteson. (1979) Effect of membrane potential and internal pH on active sodium-potassium transport and on ATP content in high-potassium sheep erythrocytes. Biochimica et Biophysica Acta (BBA) - Biomembranes 555:2, pages 285-298.
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P. J. Bjerrum. (1979) Hemoglobin-depleted human erythrocyte ghosts: Characterization of morphology and transport functions. The Journal of Membrane Biology 48:1, pages 43-67.
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B. A. Myhre, Y. Y. Nakasako & R. Schott. (2003) Studies on 4 C Stored Frozen‐Reconstituted Red Blood Cells. Transfusion 18:1, pages 29-37.
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Nariko Takano. (1978) Redistribution of hydrogen ion and chloride, and water shift across the red cell membrane of human and ruminant blood with changes in oxygen saturation. Pfl�gers Archiv European Journal of Physiology 376:1, pages 27-33.
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N Itada & R E Forster. (1977) Carbonic anhydrase activity in intact red blood cells measured with 18O exchange.. Journal of Biological Chemistry 252:11, pages 3881-3890.
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HS Bowman, FA Oski, J Reihart, MA Simmonds & RK Cunningham. (1976) Studies of the recovery and the cost of low-glycerol cryopreserved human red blood cells. Transfusion 16:2, pages 113-121.
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G. Arturson, L. Garby, B. Wranne & B. Zaar. (2008) Effect of 2, 3‐Diphosphoglycerate on the Oxygen Affinity and on the Proton‐ and Carbamino‐Linked Oxygen Affinity of Hemoglobin in Human Whole Blood. Acta Physiologica Scandinavica 92:3, pages 332-340.
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Luciano Vettore, Giancarlo Falezza, Maria C. de Matteis, Gianluigi Cetto & Mario Zandegiacomo. (1974) A new method for the determination of sodium and potassium in human red blood cells, using indocyanine green as a marker for trapped plasma. Clinica Chimica Acta 55:3, pages 345-351.
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B. Deuticke, M. Kim & Chr. Zöllner. (1973) The influence of amphotericin B on the permeability of mammalian erythrocytes to nonelectrolytes, anions and cations. Biochimica et Biophysica Acta (BBA) - Biomembranes 318:3, pages 345-359.
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J. B. Derrick, R. McConn, M. L. Sorovacu & A. W. Rowe. (1972) Studies of the Metabolic Integrity of Human Red Blood Cells After Cryopreservation. Transfusion 12:6, pages 400-404.
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Louis R. M. Guercio, Rita McConn, Arthur G. Lerner, Stephen H. Green & John H. Siegel. (1970) DYNAMIC ADAPTATION OF THE OXYHEMOGLOBIN DISSOCIATION CURVE TO ABNORMAL, CIRCULATORY PATTERNS IN CIRRHOSIS. Annals of the New York Academy of Sciences 170:1 The Hepatic C, pages 367-378.
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Jens Otto Wieth. (2008) Effects of Monovalent Cations on Sodium Permeability of Human Red Cells. Acta Physiologica Scandinavica 79:1, pages 76-87.
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M.Clauvel de Mendonca, K Schwartz & E Terrier. (1970) Sodium, potassium and osmolality of human and canine erythrocytes— Interest of trapped plasma and water content for their full significance. Comparative Biochemistry and Physiology 34:1, pages 147-161.
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Richard A. Dewall, Thomas P. Roden & Michio Kimura. (2016) Red Blood Cell Potassium as an Index of Total Body Potassium. Angiology 21:3, pages 211-214.
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J. B. Derrick, M. Lind & A. W. Rowe. (1969) Studies of the Metabolic Integrity of Human Red Blood Cells after Cryopreservation. Transfusion 9:6, pages 317-323.
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C. J. Brackenridge & C. McDonald. (1969) THE CONCENTRATIONS OF MAGNESIUM AND POTASSIUM IN ERYTHROCYTES AND PLASMA OF GERIATRIC PATIENTS WITH PSYCHIATRIC DISORDERS. Medical Journal of Australia 2:8, pages 390-394.
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A. H. Runck, C. R. Valeri & W. T. Sampson. (2009) Comparison of the Effects of Ionic and Non‐ionic Solutions on the Volume and Intracellular Potassium of Frozen and Non‐frozen Human Red Cells. Transfusion 8:1, pages 9-18.
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Jørgen Funder & Jens Otto Wieth. (2008) Chloride and Hydrogen Ion Distribution between Human Red Cells and Plasma. Acta Physiologica Scandinavica 68:2, pages 234-245.
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