The unidirectional sodium, uptake at the outer surface of the frog skin was measured by the method described by Biber and Curran (8). With bathing solutions containing 6 mM NaCl there is a good correlation between sodium uptake and short-circuit current (SCC) measured simultaneously except that the average uptake is about 40% higher than the average SCC. The discrepancy between uptake and SCC increases approximately in proportion to an increase in sodium concentration of the bathing solutions. Amiloride inhibits the unidirectional sodium uptake by 21 and 69% at a sodium concentration of 115 and 6 mM, respectively. This indicates that amiloride acts on the entry step of sodium but additional effects cannot be excluded. The sodium, uptake is not affected by 10-4 M ouabain at a sodium concentration of 115 mM but is inhibited by 40% at a sodium concentration of 6 mM. Replacement of air by nitrogen leads to a 40% decrease of sodium uptake at a sodium concentration of 6 mM. The results support the view proposed previously (8) that the sodium uptake is made up of two components, a linear component which is, essentially, not involved in transepithelial movement of sodium and a saturating component which reflects changes in transepithelial transport. Amiloride, seems largely to affect the saturating component.
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1 August 1971
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August 01 1971
Effect of Changes in Transepithelial Transport on the Uptake of Sodium across the Outer Surface of the Frog Skin
Thomas U. L. Biber
Thomas U. L. Biber
From the Department of Physiology, Yale University School of Medicine, New Haven, Connecticut 06510
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Thomas U. L. Biber
From the Department of Physiology, Yale University School of Medicine, New Haven, Connecticut 06510
Received:
November 19 1970
Online ISSN: 1540-7748
Print ISSN: 0022-1295
Copyright © 1971 by The Rockefeller University Press
1971
J Gen Physiol (1971) 58 (2): 131–144.
Article history
Received:
November 19 1970
Citation
Thomas U. L. Biber; Effect of Changes in Transepithelial Transport on the Uptake of Sodium across the Outer Surface of the Frog Skin . J Gen Physiol 1 August 1971; 58 (2): 131–144. doi: https://doi.org/10.1085/jgp.58.2.131
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