Hypertonic cryohemolysis: Ionophore and pH effects
- 1 June 1978
- journal article
- research article
- Published by Springer Nature in The Journal of Membrane Biology
- Vol. 39 (2-3) , 273-284
- https://doi.org/10.1007/bf01870335
Abstract
Human erythrocytes suspended at 37°C in hypertonic solution of either electrolytes or nonelectrolytes undergo hemolysis when the temperature is lowered toward 0°C (Green, F.A., Jung, C.Y. 1977J. Membrane Biol. 33:249). In the present studies this hypertonic cryohemolysis was profoundly affected by the pH of incubation, and was completely abolished at pH 5. In hypertonic NaCl, there was an apparent pH optimum at 6–6.5. In hypertonic sucrose, on the other hand, hemolysis increased progressively with increasing pH between 6 and 9. Amphotericin B inhibited hypertonic cryohemolysis in NaCl or KCl solution. No inhibiting effect of amphotericin B was observed when hypertonicity was due to sodium sulfate or sucrose. Valinomycin also inhibited hypertonic cryohemolysis in KCl, but did not affect the process in NaCl or sucrose solution. SITS (4-acetamido-4′-isothiocyanostilbene-2,2′-disulfonate) and phloretin interfered with this valinomycin effect, whereas phlorizin did not. These results indicate that dissipation of an osmotic gradient across membranes may be responsible for the inhibition of the hemolysis by these ionophores. Iso-osmotic cell shrinkage induced by valinomycin in 150mm NaCl solution did not result in cryohemolysis.Keywords
This publication has 25 references indexed in Scilit:
- Cold-induced hemolysis in a hypertonic milieuThe Journal of Membrane Biology, 1977
- A solid-liquid composite model of the red cell membraneThe Journal of Membrane Biology, 1976
- Effects of phlorizin on net chloride movements across the valinomycin-treated erythrocyte membraneThe Journal of Membrane Biology, 1974
- Asymmetric inhibition by phlorizin of sulfate movements across the red blood cell membraneBiochimica et Biophysica Acta (BBA) - Biomembranes, 1973
- Regulation of human red cell volume by linked cation fluxesThe Journal of Membrane Biology, 1972
- PHYSICOCHEMICAL EFFECTS OF ALDEHYDES ON THE HUMAN ERYTHROCYTEThe Journal of cell biology, 1972
- The Response of Duck Erythrocytes to Hypertonic MediaThe Journal of general physiology, 1971
- Microfilaments in Cellular and Developmental ProcessesScience, 1971
- Water-soluble proteins of the human red cell membraneThe Journal of Membrane Biology, 1970
- The Effect of Amphotericin B on the Water and Nonelectrolyte Permeability of Thin Lipid MembranesThe Journal of general physiology, 1969