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Article has an altmetric score of 3

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Referenced in 1 clinical guideline sources
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Research Article Free access | 10.1172/JCI110297

Exercise-induced hemolysis in xerocytosis. Erythrocyte dehydration and shear sensitivity.

O S Platt, S E Lux, and D G Nathan

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Published September 1, 1981 - More info

Published in Volume 68, Issue 3 on September 1, 1981
J Clin Invest. 1981;68(3):631–638. https://doi.org/10.1172/JCI110297.
© 1981 The American Society for Clinical Investigation
Published September 1, 1981 - Version history
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Abstract

A patient with xerocytosis was found to have swimming-induced intravascular hemolysis and shortening of erythrocyte life-span. In a microviscometer, xerocytes were more susceptible than normal erythrocytes to hemolysis by shear stress. Fractionation of normal and abnormal cells on discontinuous Stractan density gradients revealed that increasingly dehydrated cells were increasingly more shear sensitive. This sensitivity was partially corrected by rehydrating xerocytic erythrocytes by means of the cation-ionophore nystatin in a high potassium buffer. Conversely, normal erythrocytes were rendered shear sensitive by dehydrating them with nystatin in a low potassium buffer. This effect of dehydration was entirely reversible if normal cells were dehydrated for less than 4 h but was only partially reversed after more prolonged dehydration. It is likely that dehydration of erythrocytes results in shear sensitivity primarily because of concentration of cell contents and reduced cellular deformability. With prolonged dehydration, secondary membrane changes may potentiate the primary effect. This increased shear sensitivity of dehydrated cells may explain atraumatic exercise-induced hemolysis in xerocytosis as cardiac output is shifted to vessels of exercising muscles with small diameters and high shear rates.

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Referenced in 1 clinical guideline sources
13 readers on Mendeley
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