The relationship between peritubular capillary protein concentration and fluid reabsorption by the renal proximal tubule
Open Access
- 1 August 1969
- journal article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 48 (8) , 1519-1531
- https://doi.org/10.1172/jci106118
Abstract
The relationship between peritubular capillary protein concentration and rate of sodium reabsorption by the rat proximal tubule was examined using free-flow recollection micropuncture techniques. Tubule fluid-to-plasma inulin ratios were measured before, during, and at successive intervals after brief (15-25 sec) intra-aortic injections (at the level of the renal artery) of colloid-free, isoncotic, and hyperoncotic solutions. Arterial hematocrit and protein concentrations were measured simultaneously in these rats. In other rats, total protein concentration of peritubular capillary blood plasma was determined before, during, and after these same infusions with a newly described submicroliter fiber-optic colorimeter. In the 15-25 sec interval necessary to infuse 2 ml of these test solutions, fractional and absolute sodium reabsorption varied directly with peritubular capillary colloid osmotic pressure, declining during infusion of colloid-free solutions, increasing during hyperoncotic infusions, and remaining unchanged during isoncotic infusions. In the subsequent 20-min interval after intra-aortic injection of these test solutions, capillary protein concentration remained at (isoncotic infusions) or returned to (colloid-free and hyperoncotic fluids) control values. Whereas reabsorption after colloid-free solutions returned to base line levels in parallel with the return in capillary protein concentration, after colloid infusions (which resulted in continued expansion of extracellular fluid volume), a progressive decline in reabsorption was observed. These results afford strong evidence that peritubular capillary colloid osmotic pressure is one important determinant of proximal sodium reabsorption. Nevertheless it is apparent that mechanisms other than or in addition to this must be invoked to explain the delayed inhibition of reabsorption that accompanies expansion of extracellular fluid volume by colloid solutions.Keywords
This publication has 31 references indexed in Scilit:
- Cross-Circulation Experiments on the Mechanism of the Natriuresis during Saline Loading in the DogCirculation Research, 1967
- Factors affecting sodium reabsorption by the proximal tubule as determined during blockade of distal sodium reabsorption.Journal of Clinical Investigation, 1966
- The effects of combined renal vasodilatation and pressor agents on renal hemodynamics and the tubular reabsorption of sodium.Journal of Clinical Investigation, 1966
- Mechanism of glomerulotubular balance. II. Regulation of proximal tubular reabsorption by tubular volume, as studied by stopped-flow microperfusion.Journal of Clinical Investigation, 1966
- Mechanism of glomerulotubular balance. I. Effect of aortic constriction and elevated ureteropelvic pressure on glomerular filtration rate, fractional reabsorption, transit time, and tubular size in the proximal tubule of the rat.Journal of Clinical Investigation, 1966
- Evidence from Gross Circulation Studies for a Humoral Mechanism In the Natriuresis of Saline LoadingExperimental Biology and Medicine, 1966
- Réduction de la natriurèse par la perfusion de protéines dans l’artère rénale du chienNephron, 1966
- On the glomerular tubular balance in the rat kidneyPflügers Archiv - European Journal of Physiology, 1965
- Studies on the mechanism of natriuresis accompanying increased renal blood flow and its role in the renal response to extracellular volume expansion.Journal of Clinical Investigation, 1965
- Réduction de la natriurèse par la perfusion d’albumine dans la veine porte rénale du coqNephron, 1965