TY - JOUR
T1 - Conductometric study of erythrocytes during centrifugation. II. Erythrocyte deformability
AU - Pribush, Alexander
AU - Meyerstein, Dan
AU - Meyerstein, Naomi
N1 - Funding Information:
This study was funded by a grant from the Harry Stern Foundation for Applied Research. Alexander Pribush was supported in part by Ministry of Absorption, Israel. The constant support by the Henry and Berenice Kaufmann
PY - 1995/5/17
Y1 - 1995/5/17
N2 - Erythrocyte deformability was studied by continuous reading of sediment conductance during centrifugation. The decrease in sediment conductivity during centrifugation reflects erythrocyte deformation in the pellet. The degree of erythrocyte deformation depends on the duration of centrifugation and the magnitude of centripetal acceleration. When constant centrifugal force is applied over an extended period of time, a gradual decrease in pellet conductivity occurs. Stepwise enhancement of centripetal acceleration during centrifugation induces a rapid increase in erythrocyte deformation. After centrifugation, the relaxation of erythrocyte deformation is observed. However, the relaxation and the recovery of cell shape are incomplete. The difference in compressibility of previously centrifuged and noncentrifuged cells demonstrates that centrifugation causes irreversible alteration in erythrocyte deformability. The results show that the time-dependent resistance of erythrocyte sediment during centrifugation may serve as a useful index for the kinetics of erythrocyte deformation.
AB - Erythrocyte deformability was studied by continuous reading of sediment conductance during centrifugation. The decrease in sediment conductivity during centrifugation reflects erythrocyte deformation in the pellet. The degree of erythrocyte deformation depends on the duration of centrifugation and the magnitude of centripetal acceleration. When constant centrifugal force is applied over an extended period of time, a gradual decrease in pellet conductivity occurs. Stepwise enhancement of centripetal acceleration during centrifugation induces a rapid increase in erythrocyte deformation. After centrifugation, the relaxation of erythrocyte deformation is observed. However, the relaxation and the recovery of cell shape are incomplete. The difference in compressibility of previously centrifuged and noncentrifuged cells demonstrates that centrifugation causes irreversible alteration in erythrocyte deformability. The results show that the time-dependent resistance of erythrocyte sediment during centrifugation may serve as a useful index for the kinetics of erythrocyte deformation.
KW - Centrifugation
KW - Deformability
KW - Electric conductance
KW - Erythrocyte
KW - Pellet
UR - https://www.scopus.com/pages/publications/0028999511
U2 - 10.1016/0005-2760(95)00022-5
DO - 10.1016/0005-2760(95)00022-5
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C2 - 7766698
AN - SCOPUS:0028999511
SN - 0005-2760
VL - 1256
SP - 194
EP - 200
JO - Biochimica et Biophysica Acta - Lipids and Lipid Metabolism
JF - Biochimica et Biophysica Acta - Lipids and Lipid Metabolism
IS - 2
ER -