Abstract
Renal hemodynamics and tubular fractional sodium reabsorption (FSR) were evaluated by clearance techniques during acute and chronic extracellular volume expansion in man. (1 - V/GFR) x 100 was used as an index of proximal and (C(H2O)/V) x 100 as an estimate of distal fractional reabsorption. After acute loading with isotonic saline 37 ml/kg body wt, proximal FSR decreased by 4.8% and distal FSR decreased by 4.4%. After comparable chronic expansion by mineralocorticoids ("escape"), proximal FSR also decreased by 3.9%, but distal reabsorption was not altered.In separate studies, subjects were progressively infused with saline to 57 (E(1)) and to 80 (E(2)) ml/kg body wt, and appeared to divide into "excreters" (maximum U(Na)V > 1000 muEq/min) and "nonexcreters" (maximum U(Na)V < 550 muEq/min). In the excreters, GFR rose, proximal FSR decreased by 7.1% after E(1) and only 0.9% further after E(2). Distal FSR fell by 14.8% after E(1) and by an additional 4.9% after E(2). In the nonexcreters, GFR was stable and proximal FSR did not fall significantly after E(1) or E(2). Distal FSR decreased 4.5% after E(1) and 1.3% further after E(2). It is concluded that both acute and chronic extracellular expansion decrease proximal FSR in man, but only acute loading depresses distal FSR. Ability of some men to excrete sodium rapidly after acute infusion is related to larger increases in GFR and greater decreases in both proximal and distal FSR than occur in men in whom natriuresis is more limited.
MeSH Terms
Adult
Aminohippuric Acids/blood,urine
Desoxycorticosterone/pharmacology
Diet
Diuresis
Extracellular Space
Humans
Inulin/blood,urine
Isotonic Solutions
Kidney Tubules/physiology
Kidney Tubules, Distal/drug effects,physiology
Kidney Tubules, Proximal/drug effects,physiology
Male
Middle Aged
Osmolar Concentration
Sodium/metabolism
Sodium Chloride/pharmacology
Water/metabolism
Chemicals
Aminohippuric Acids
Isotonic Solutions
Water
Desoxycorticosterone
Sodium Chloride
Inulin
Sodium
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Alexander E A
Doner D W
Auld R B
Levinsky N G
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