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Am J Physiol Regul Integr Comp Physiol 264: R661-R667, 1993;
0363-6119/93 $5.00
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AJP - Regulatory, Integrative and Comparative Physiology, Vol 264, Issue 4 661-R667, Copyright © 1993 by American Physiological Society


ARTICLES

Neurogenic control of renal function in response to graded nonhypotensive hemorrhage in conscious dogs

L. D. Nelson and J. L. Osborn
Department of Physiology, Medical College of Wisconsin, Milwaukee 53226.

The reflex control of plasma renin activity (PRA) and urinary sodium excretion (UNaV) was evaluated in 13 dogs instrumented for chronic study and maintained on a normal sodium intake (40 meq/day). Graded blood volume depletion of 14 (BVD1) and 21% (BVD2) of the estimated total blood volume was used to activate renal sympathetic nerve activity (RSNA), and experiments were conducted before and after bilateral renal denervation (DNX). In dogs with innervated kidneys, nonhypotensive BVD1 increased RSNA 40.9 +/- 10.9% (P < 0.05) above control. Blood volume depletion increased PRA from 1.95 +/- 0.52 to 3.5 +/- 0.57 ng.ml-1 x h-1 and decreased UNaV from 58.2 +/- 10.1 to 35.5 +/- 4.3 mu eq/min without changing renal blood flow or glomerular filtration rate. BVD2 failed to further activate RSNA (52.0 +/- 16.7%) but did increase PRA to 4.85 +/- 0.83 ng.ml-1 x h-1 and decreased UNaV to 17.9 +/- 2.7 mu eq/min. Renal DNX (n = 13) abolished both the PRA and antinatriuretic responses to BVD1 and BVD2. Thus volume-invoked reflex activation of RSNA, but not altered renal hemodynamics, mediates, activation of PRA and antinatriuresis. This neurogenic control of renal function may be critical to the rapid regulation of extracellular fluid volume, via alterations in urinary excretion.


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