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Citations to this article

Sodium transport by rat cortical collecting tubule. Effects of vasopressin and desoxycorticosterone.
M C Reif, … , S L Troutman, J A Schafer
M C Reif, … , S L Troutman, J A Schafer
Published April 1, 1986
Citation Information: J Clin Invest. 1986;77(4):1291-1298. https://doi.org/10.1172/JCI112433.
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Sodium transport by rat cortical collecting tubule. Effects of vasopressin and desoxycorticosterone.

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Abstract

We have used rat cortical collecting tubules perfused in vitro to study the effects of antidiuretic hormone (ADH) and desoxycorticosterone (DOCA) on the unidirectional fluxes of sodium. We found that in the basal state, lumen-to-bath flux (Jlb) and bath-to-lumen flux (Jbl) of 22Na were approximately equal, 39.5 +/- 3.9 and 41.8 +/- 11.0 pmol X min-1 X min-1, respectively, resulting in no net flux. Addition of 100 microU/ml ADH to the bath produced a stable increase in Jlb to 58.3 +/- 4.7 pmol X min-1 X mm-1. Pretreatment of the animal with DOCA for 4 to 7 d (20 mg/kg per d) increased baseline Jlb to 81.6 +/- 8.7 pmol X min-1 X mm-1. Addition of ADH to a tubule from a DOCA-pretreated rat caused an increase in Jlb to 144.1 +/- 12.0 pmol X min-1 X mm-1 X Neither hormone had an effect on Jbl X Thus ADH produced a greater absolute and fractional increase in Jlb when the animal was pretreated with DOCA, and the ADH-induced increase over baseline was greater than the DOCA-induced increase. Both the ADH-and DOCA-induced stimulation of Jlb were completely abolished by 10(-5) M luminal amiloride, suggesting that the route of sodium transport stimulated by both hormones involves apical sodium channels. However, ADH and DOCA have very different time courses of action; ADH acted within minutes, while aldosterone and DOCA are known to require 90-180 min. The facilitating action of ADH on DOCA-induced stimulation of sodium transport may be important for maximal sodium reabsorption and for the ability to achieve a maximally concentrated urine.

Authors

M C Reif, S L Troutman, J A Schafer

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Principal cells of cortical collecting ducts of the rat are not a route of transepithelial Cl? transport
E Schlatter, R Greger, JA Schafer
Pflügers Archiv - European Journal of Physiology 1990
Enhanced natriuretic potency of intravenous clonidine: extrarenal site of action?
DE Blandford, DD Smyth
European Journal of Pharmacology 1989
Regulation of epithelial sodium channel densities by vasopressin signalling
WJ Els, SI Helman
Cellular Signalling 1989
Effects of a high potassium diet on electrical properties of cortical collecting ducts from adrenalectomized rabbits
S Muto, S Sansom, G Giebisch
Journal of Clinical Investigation 1988
Stimulation of sodium transport by aldosterone and arginine vasotocin in A6 cells
RJ Bindels, JA Schafer, MC Reif
Biochimica et Biophysica Acta (BBA) - Bioenergetics 1988
Mechanisms and regulation of ion transport in the renal collecting duct
E Frömter
Comparative Biochemistry and Physiology Part A: Physiology 1988
Noise analysis of cAMP-stimulated Na current in frog colon
R Krattenmacher, H Fischer, W Driessche, W Clauss
Pflügers Archiv - European Journal of Physiology 1988
Effect of potassium adaptation on the distribution of potassium, sodium and chloride across the apical membrane of renal tubular cells
FX Beck, A Dörge, R Rick, M Schramm, K Thurau
Pflügers Archiv - European Journal of Physiology 1987
Electrophysiological studies in principal cells of rat cortical collecting tubules ADH increases the apical membrane Na+-conductance
E Schlatter, JA Schafer
Pflügers Archiv - European Journal of Physiology 1987
Renal alpha 2-adrenergic receptors and hypertension
WA Pettinger
Hypertension 1987

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