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December 1, 1996AJP Regulatory Integrative and Comparative Physiology43 citations

Functional response to graded increases in renal nerve activity during hypoxia in conscious rabbits

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SMSimon C. MalpasASAmany ShwetaWAWarwick P. Anderson

Structured PICO

P
Population
14 conscious rabbits (7 intact, 7 with renal denervation)
I
Intervention
Breathing four different hypoxic gas mixtures (14% O2, 10% O2, 10% O2 + 3% CO2, and 10% O2 + 5% CO2) for 30 min each
C
Comparator
30-min control period (room air) before and after the gas mixture, and a separate group of 7 rabbits with renal denervation
O
Outcome
Renal hemodynamic and excretory responses (glomerular filtration rate, renal blood flow, sodium and fluid excretion, plasma renin activity)surrogate

Graded physiological increases in renal sympathetic nerve activity produce graded, non-selective changes in renal hemodynamics, excretory function, and renin release in conscious rabbits.

Abstract

Changes in renal sympathetic nerve activity (SNA) are postulated to influence renal function in selective ways, such that different levels of activation produce particular renal responses, initially in renin release, then sodium excretion, with changes in renal hemodynamics occurring only with much greater stimulus intensities. The aim of this study was to determine the renal hemodynamic and excretory responses to graded physiological increases in renal SNA induced by breathing different hypoxic gas mixtures. Experiments were performed in seven conscious rabbits subjected to four gas mixtures (14% O2, 10% O2, 10% O2 + 3% CO2, and 10% O2 + 5% CO2) and instrumented for recording of renal nerve activity. After a 30-min control period, rabbits were subjected to one of the four gas mixtures for 30 min, and then room air was resumed for a further 30 min. The four gas mixtures increased renal SNA by 14, 38, 49, and 165% respectively, but arterial pressure (thus renal perfusion pressure) was not altered by any of the gas mixtures. The greatest level of sympathetic activation produced significant falls in glomerular filtration rate (GFR), renal blood flow, sodium and fluid excretion, and significant increases in plasma renin activity. These returned to levels not significantly different from control conditions in the 30-min period after the gas mixture. When the changes to the various gas mixtures were analyzed within each rabbit, a significant linear relationship was found with all variables to the increase in SNA. Renal denervation in a separate group of seven rabbits completely abolished all of the above responses to the different gas mixtures. Thus graded activation of renal nerves induced by changes in inspired gas mixtures resulted in graded decreases in renal blood flow, GFR, and sodium excretion and graded increases in renin activity, with the changes occurring across a similar range of nerve activities; there was no evidence for a selective change in any renal variable.

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Cite This Study

Malpas et al. (1996) studied this question.

synapsesocial.com/papers/6a7591c6fd25b6479067a3f0https://doi.org/10.1152/ajpregu.1996.271.6.r1489
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Neurogenic control of renal function in response to graded nonhypotensive hemorrhage in conscious dogs1993 · 25 citations
  2. 2A new approach to analysis of synchronized sympathetic nerve activity1992 · 71 citations
  3. 3Effect of renal sympathetic nerve stimulation on proximal water and sodium reabsorption.1976 · 268 citations
  4. 4Two types of sympathetic axon innervating the juxtaglomerular arterioles of the rabbit and rat kidney differ structurally from those supplying other arteries1991 · 57 citations
  5. 5Renal sympathetic nerve activity and natriuresis during water immersion in conscious dogs1989 · 73 citations