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Changes from High Potassium (hk) to Low Potassium (lk) in Bovine Red Cells

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Journal J Gen Physiol
Specialty Physiology
Date 1972 Mar 1
PMID 4258145
Citations 11
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Abstract

Red cells of newborn calves contain 105-110 mmole K(+) and 1-5 mmole Na(+) per liter of cells. As the animals age the K(+) content decreases to a value of 25-30 mmole/liter of cells after about 60 days. At approximately the same time, the sodium content reaches a value of 60-70 mmole/liter. The time required for half change (t((1/2))) is 35-37 days for both Na(+) and K(+). The activity of (Na + K)-adenosine triphosphatase (ATPase) and the influx of K(42) and Rb(86) into the red cells are high at birth and are reduced to 5 and 15% of their original values, respectively, in mature animals. t((1/2)) for both is of the order of 30-35 days. The membrane Mg-ATPase activity is also high at birth and is reduced with a t((1/2)) of 28-32 days to a final value of about 20% of its activity at birth. Separation of red cells according to their age showed that, in animals at the age of transition, newly formed red cells contain a higher K/Na ratio and a higher active transport capacity than older red cells of the same animal. It is suggested that the changes observed are a reflection of the average age of the red cell population as the animal grows.

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References
1.
Leif R, Vinograd J . THE DISTRIBUTION OF BUOYANT DENSITY OF HUMAN ERYTHROCYTES IN BOVINE ALBUMIN SOLUTIONS. Proc Natl Acad Sci U S A. 1964; 51:520-8. PMC: 300106. DOI: 10.1073/pnas.51.3.520. View

2.
BLUNT M, Evans J . CHANGES IN THE CONCENTRATION OF POTASSIUM IN THE ERYTHROCYTES AND IN HAEMOGLOBIN TYPE IN MERINO SHEEP UNDER A SEVERE ANAEMIC STRESS. Nature. 1963; 200:1215-6. DOI: 10.1038/2001215b0. View

3.
Folch J, Lees M, SLOANE STANLEY G . A simple method for the isolation and purification of total lipides from animal tissues. J Biol Chem. 1957; 226(1):497-509. View

4.
Cohen B, Evans J, Harris H, King J, WARREN F . Genetics of haemoglobin and blood potassium differences in sheep. Nature. 1956; 178(4538):849-50. DOI: 10.1038/178849a0. View

5.
Evans J . Electrolyte concentrations in red blood cells of British breeds of sheep. Nature. 1954; 174(4437):931-2. DOI: 10.1038/174931a0. View