Renal endothelial dysfunction and impaired autoregulation after ischemia-reperfusion injury result from excess nitric oxide
- 1 September 2006
- journal article
- Published by American Physiological Society in American Journal of Physiology-Renal Physiology
- Vol. 291 (3) , F619-F628
- https://doi.org/10.1152/ajprenal.00302.2005
Abstract
Endothelial dysfunction in ischemic acute renal failure (IARF) has been attributed to both direct endothelial injury and to altered endothelial nitric oxide synthase (eNOS) activity, with either maximal upregulation of eNOS or inhibition of eNOS by excess nitric oxide (NO) derived from iNOS. We investigated renal endothelial dysfunction in kidneys from Sprague-Dawley rats by assessing autoregulation and endothelium-dependent vasorelaxation 24 h after unilateral (U) or bilateral (B) renal artery occlusion for 30 (U30, B30) or 60 min (U60, B60) and in sham-operated controls. Although renal failure was induced in all degrees of ischemia, neither endothelial dysfunction nor altered facilitation of autoregulation by 75 pM angiotensin II was detected in U30, U60, or B30 kidneys. Baseline and angiotensin II-facilitated autoregulation were impaired, methacholine EC50was increased, and endothelium-derived hyperpolarizing factor (EDHF) activity was preserved in B60 kidneys. Increasing angiotensin II concentration restored autoregulation and increased renal vascular resistance (RVR) in B60 kidneys; this facilitated autoregulation, and the increase in RVR was abolished by 100 μM furosemide. Autoregulation was enhanced by Nω-nitro-l-arginine methyl ester. Peri-ischemic inhibition of inducible NOS ameliorated renal failure but did not prevent endothelial dysfunction or impaired autoregulation. There was no significant structural injury to the afferent arterioles with ischemia. These results suggest that tubuloglomerular feedback is preserved in IARF but that excess NO and probably EDHF produce endothelial dysfunction and antagonize autoregulation. The threshold for injury-producing, detectable endothelial dysfunction was higher than for the loss of glomerular filtration rate. Arteriolar endothelial dysfunction after prolonged IARF is predominantly functional rather than structural.Keywords
This publication has 46 references indexed in Scilit:
- Macula densa basolateral ATP release is regulated by luminal [NaCl] and dietary salt intakeAmerican Journal of Physiology-Renal Physiology, 2004
- Facilitation of renal autoregulation by angiotensin II is mediated through modulation of nitric oxideActa Physiologica Scandinavica, 2003
- Role of glomerular nitric oxide in glycerol-induced acute renal failureCanadian Journal of Physiology and Pharmacology, 2000
- Biology of ischemic and toxic renal tubular cell injuryCurrent Opinion in Nephrology and Hypertension, 1998
- Macula densa derived nitric oxide in regulation of glomerular capillary pressureKidney International, 1996
- Hydroxyl radical generation following ischaemia-reperfusion in cell-free perfused rat kidneyBiochimica et Biophysica Acta (BBA) - General Subjects, 1995
- Non‐linear regression and variance ratio analysis of time based NMR dataNMR in Biomedicine, 1993
- Differences in vascular reactivity in models of ischemic acute renal failureKidney International, 1991
- Smooth muscle calcium and endothelium-derived relaxing factor in the abnormal vascular responses of acute renal failure.Journal of Clinical Investigation, 1988
- Hemodynamic and single nephron function during the maintenance phase of ischemic acute renal failure in the dogKidney International, 1981