Single cell microspectroscopy reveals that erythrocytes containing hemoglobin S retain a ‘memory’ of previous sickling cycles
- 15 August 1988
- journal article
- Published by Wiley in FEBS Letters
- Vol. 236 (1), 127-131
- https://doi.org/10.1016/0014-5793(88)80299-0
Abstract
Red blood cells from patients homozygotes for hemoglobin S (HbS) have been studied using a computer-controlled microspectrophotometer, which allows measurements of spectra and dynamics to be undertaken in a single erythrocyte. Complete photodissociation of HbCO results in polymerization of intracellular deoxyhemoglobin S and deformation of the cell. This is associated with a delayed optical change, which, for the same cell, was found to be highly reproducible between repeated cycles of sickling. Comparison of photographic records and absorbance time courses indicates that an erythrocyte, once having undergone a photochemically induced sickling event, always deforms along the same axis during subsequent cycles. This behaviour implies that the cell retains a 'memory' of its previous cycle(s), possibly via slow relaxations of the membrane. In addition, rebinding of CO to intracellular hemoglobin was found to be slower if measured after deformation of the cell, with possible important implications for the pathological mechanism of sickling.Keywords
This publication has 15 references indexed in Scilit:
- Regulation of Erythrocyte Cation and Water Content in Sickle Cell AnemiaScience, 1986
- Kinetics of sickle haemoglobin polymerization in single red cellsNature, 1982
- Kinetic studies on photolysis-induced gelation of sickle cell hemoglobin suggest a new mechanismBiophysical Journal, 1980
- Erythrocyte Adherence to Endothelium in Sickle-Cell AnemiaNew England Journal of Medicine, 1980
- Kinetics of the reaction with CO of human erythrocytes Observations by single cell spectroscopyFEBS Letters, 1978
- Irreversible deformation of the spectrin-actin lattice in irreversibly sickled cells.Journal of Clinical Investigation, 1976
- Fast scanning microspectroscopy: an electrodynamic moving-condenser methodApplied Optics, 1976
- Sickling times of individual erythrocytes at zero Po2.Journal of Clinical Investigation, 1975
- Gene Mutations in Human Hæmoglobin: the Chemical Difference Between Normal and Sickle Cell HæmoglobinNature, 1957
- Sickle Cell Anemia, a Molecular DiseaseScience, 1949