Pressure-diuresis in volume-expanded rats. Cortical and medullary hemodynamics.

Author:

Roman R J1,Cowley A W1,Garcia-Estañ J1,Lombard J H1

Affiliation:

1. Department of Physiology, Medical College of Wisconsin, Milwaukee 53226.

Abstract

This study evaluated whether pressure-diuretic and pressure-natriuretic responses are associated with alterations in vasa recta hemodynamics. Autoregulation of cortical and papillary blood flow was studied using a laser-Doppler flowmeter in volume-expanded and hydropenic rats. Superficial cortical flow and whole kidney renal blood flow were autoregulated in volume-expanded rats and decreased by less than 10% after renal perfusion pressure was lowered from 150 to 100 mm Hg. In contrast, papillary blood flow was not autoregulated and fell by 24 +/- 2%. The failure of papillary blood flow to autoregulate was due to changes in the number of perfused vessels as well as to alterations in blood flow in individual ascending and descending vasa recta. Pressure in vasa recta capillaries increased from 6.8 +/- 0.8 to 13.8 +/- 1.2 mm Hg after renal perfusion pressure was elevated from 100 to 150 mm Hg, and renal interstitial pressure rose from 7.4 +/- 0.8 to 12.3 +/- 1.4 mm Hg. In hydropenic rats, papillary blood flow was autoregulated to a significant extent, but it still decreased by 19% after renal perfusion pressure was lowered from 150 to 100 mm Hg. The pressure-diuretic and pressure-natriuretic responses in hydropenic rats were blunted in comparison to those observed in volume-expanded rats. These findings indicate that the pressure-diuretic and pressure-natriuretic responses are associated with changes in vasa recta hemodynamics and renal interstitial pressure.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Internal Medicine

Reference37 articles.

1. Effect of experimental neurogenic hypertension on renal blood flow and glomerular filtration rates in intact denervated kidneys of unanesthetized rabbits with adrenal glands demedullated;Forster RP;Am J Physiol,1947

2. Mechanism of natriuresis and diuresis during elevated renal arterial pressure;Selkurt EE;Am J Physiol,1965

3. The Effect of Renal Perfusion Pressure on the Net Transport of Sodium Out of Distal Tubular Urine As Studied with the Stop-Flow Technique*

4. Mechanisms of sodium balance in hypertension: role of pressure natriuresis;Hall JE;J Hypertens,1986

5. Intrarenal mechanisms for regulating body fluid volume. In: Guyton AC, Taylor AE, eds. Circulatory physiology II: dynamics and control of the body fluids;Navar LG;Philadelphia: Saunders,1975

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