Properties of Hemoglobin Solutions in Red Cells
暂无分享,去创建一个
[1] D. Miller. Sugar uptake as a function of cell volume in human erythrocytes , 1964, The Journal of physiology.
[2] M. Perutz. The composition and swelling properties of haemoglobin crystals , 1946 .
[3] J. Oncley,et al. The contribution of sialic acid to the surface charge of the erythrocyte. , 1962, The Journal of biological chemistry.
[4] H. Schwan. ELECTRICAL PROPERTIES OF BOUND WATER , 1965 .
[5] A. Katchalsky,et al. SECTION II: Polybase properties of polyvinylamine , 1957 .
[6] V. Parsegian. Forces between Lecithin Bimolecular Leaflets Are Due to a Disordered Surface Layer , 1967, Science.
[7] G. Adair. The Thermodynamic Analysis of the Observed Osmotic Pressures of Protein Salts in Solutions of Finite Concentration , 1929 .
[8] A. Rothstein,et al. Chloroplast membrane characteristics. , 1967, Biochimica et biophysica acta.
[9] G. Adair. A theory of partial osmotic pressures and membrane equilibria, with special reference to the application of Dalton's Law to hæmoglobin solutions in the presence of salts , 1928 .
[10] D. Drabkin. Spectrophotometric studies. XV. Hydration of macro sized crystals of human hemoglobin, and osmotic concentrations in red cells. , 1950, Journal of Biological Chemistry.
[11] L. Pauling,et al. Sickle cell anemia a molecular disease. , 1949, Science.
[12] S. Ørskov. The Volume of the Erythrocytes at Different Osmotic Pressure. Further Experiments on the Influence of Lead on the Permeability of Cations , 1946 .
[13] J. B. Hasted,et al. The dielectric estimation of protein hydration , 1952, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[14] J. R. Blinks. Influence of osmotic strength on cross‐section and volume of isolated single muscle fibres , 1965, The Journal of physiology.
[15] JOSEPH M. Hill,et al. Hemolysis and Related Phenomena , 1949 .
[16] D. Herbert,et al. Molecular size, shape and aggregation in concentrated protein solutions as revealed by X-ray scattering Haemoglobin and egg-albumin , 1950 .
[17] G. R. Bartlett. Human red cell glycolytic intermediates. , 1959, The Journal of biological chemistry.
[18] D. Dick,et al. Osmotic equilibria in human erythrocytes studied by immersion refractometry , 1958, Proceedings of the Royal Society of London. Series B - Biological Sciences.
[19] Bernal Jd. The structure of water and its biological implications. , 1965 .
[20] A C BURTON,et al. MECHANICAL PROPERTIES OF THE RED CELL MEMBRANE. I. MEMBRANE STIFFNESS AND INTRACELLULAR PRESSURE. , 1964, Biophysical journal.
[21] Victor W. Sidel,et al. Osmotic Properties of Human Red Cells , 1964, The Journal of general physiology.
[22] F. T. Jung. Blood and Other Body Fluids , 1961 .
[23] J. P. Knudsen,et al. Hemoglobin spacing in erythrocytes. , 1953, Archives of biochemistry and biophysics.
[24] Drabkin Dl. Spectrophotometric studies. XV. Hydration of macro sized crystals of human hemoglobin, and osmotic concentrations in red cells. , 1950 .
[25] H. Krebs,et al. Energy Transformations in Living Matter , 1957 .
[26] C. M. Bobo. Nonsolvent Water in Human Erythrocytes and Hemoglobin Solutions , 1967, The Journal of general physiology.
[27] M. Shimizu. [Electrolyte solutions]. , 2019, [Kango] Japanese journal of nursing.
[28] D. Wilkie,et al. The osmotic properties of striated muscle fibres in hypertonic solutions , 1963, The Journal of physiology.