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January 1, 1999AJP Regulatory Integrative and Comparative Physiology39 citations

Role of nitric oxide in modulating renal function and arterial pressure during chronic aldosterone excess

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JGJoey P. GrangerSKSalah Eldin KassabJNJacqueline Novak

Structured PICO

Does nitric oxide inhibition with L-NAME prevent renal vasodilation and escape from sodium retention during chronic aldosterone excess in dogs?

P
Population
21 conscious, chronically instrumented dogs (9 control, 12 pretreated with L-NAME)
I
Intervention
Aldosterone (15 microgram. kg-1. min-1 for 7 days) with NO synthesis inhibitor L-NAME pretreatment (10 microgram. kg-1. min-1)
C
Comparator
Aldosterone (15 microgram. kg-1. min-1 for 7 days) alone (control dogs)
O
Outcome
Renal vasodilation (renal plasma flow, glomerular filtration rate) and escape from sodium-retaining actions of aldosteronesurrogate

Nitric oxide plays an important role in mediating renal vasodilation during chronic aldosterone excess in a canine model.

Abstract

Chronic aldosterone (Aldo) excess is associated with transient sodium retention, extracellular fluid volume expansion, renal vasodilation, and hypertension. The purpose of this study was to determine the role of nitric oxide (NO) in mediating the renal vasodilation and the escape from the sodium-retaining actions of Aldo. To achieve this goal, we examined the long-term effects of Aldo (15 microgram. kg-1. min-1 for 7 days) in conscious, chronically instrumented control dogs (n = 9) and in dogs (n = 12) pretreated with the NO synthesis inhibitor NG-nitro-L-arginine methyl ester (L-NAME; 10 microgram. kg-1. min-1). In control dogs, Aldo caused a transient sodium retention (126 +/- 6 to 56 +/- 2 meq/day) followed by a return of sodium excretion to normal levels. Aldo also increased renal plasma flow by 15% (205 +/- 13 to 233 +/- 16 ml/min), glomerular filtration rate by 20% (72 +/- 3 to 87 +/- 5 ml/min), and arterial pressure from 90 +/- 3 to 102 +/- 3 mmHg. Aldo increased urinary nitrate/nitrite excretion by 60% in the control dogs. Although the sodium-retaining (144 +/- 7 to 56 +/- 7 meq/day) and arterial pressure (122 +/- 6 to 136 +/- 5 mmHg) responses to Aldo were the same in dogs pretreated with L-NAME compared with control, the renal hemodynamic response was markedly attenuated. The results of this study suggest that NO plays an important role in mediating the renal vasodilation during chronic Aldo excess.

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Cite This Study

Granger et al. (1999) studied this question.

synapsesocial.com/papers/69deab2f7702a00918b0c670https://doi.org/10.1152/ajpregu.1999.276.1.r197
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