Role of superoxide and angiotensin II suppression in salt-induced changes in endothelial Ca2+ signaling and NO production in rat aorta
Open Access
- 1 August 2006
- journal article
- Published by American Physiological Society in American Journal of Physiology-Heart and Circulatory Physiology
- Vol. 291 (2), H929-H938
- https://doi.org/10.1152/ajpheart.00692.2005
Abstract
Male Sprague-Dawley rats were maintained on a low-salt (LS) diet (0.4% NaCl) or changed to a high-salt (HS) diet (4% NaCl) for 3 days. Increases in intracellular Ca2+ ([Ca2+]i) in response to methacholine (10 μM) and histamine (10 μM) were significantly attenuated in aortic endothelial cells from rats fed a HS diet, whereas thapsigargin (10 μM)-induced increases in [Ca2+]i were unaffected. Methacholine-induced nitric oxide (NO) production was eliminated in endothelial cells of aortas from rats fed a HS diet. Low-dose ANG II infusion (5 ng·kg−1·min−1 iv) for 3 days prevented impaired [Ca2+]i signaling response to methacholine and histamine and restored methacholine-induced NO production in aortas from rats on a HS diet. Adding Tempol (500 μM) to the tissue bath to scavenge superoxide anions increased NO release and caused Nω-nitro-l-arginine methyl ester-sensitive vascular relaxation in aortas from rats fed a HS diet but had no effect on methacholine-induced Ca2+ responses. Chronic treatment with Tempol (1 mM) in the drinking water restored NO release, augmented vessel relaxation, and increased methacholine-induced Ca2+ responses significantly in aortas from rats on a HS diet but not in aortas from rats on a LS diet. These findings suggest that 1) agonist-induced Ca2+ responses and NO levels are reduced in aortas of rats on a HS diet; 2) increased vascular superoxide levels contribute to NO destruction, and, eventually, to impaired Ca2+ signaling in the vascular endothelial cells; and 3) reduced circulating ANG II levels during elevated dietary salt lead to elevated superoxide levels, impaired endothelial Ca2+ signaling, and reduced NO production in the endothelium.Keywords
This publication has 35 references indexed in Scilit:
- Intra-Arterial Thrombolytic Therapy in Peri-Coronary Angiography Ischemic StrokeStroke, 2005
- Functionality of nitrated acetylcholine receptor: The two-step formation of nitrotyrosines reveals their differential role in effectors bindingFEBS Letters, 2005
- Salt-induced ANG II suppression impairs the response of cerebral artery smooth muscle cells to prostacyclinAmerican Journal of Physiology-Heart and Circulatory Physiology, 2005
- Up‐regulation of the extracellular matrix remodeling genes, biglycan, neutrophil gelatinase‐associated lipocalin and matrix metalloproteinase‐9 in familial amyloid polyneuropathyThe FASEB Journal, 2004
- eNOS at a glanceJournal of Cell Science, 2004
- Effect of high-salt diet on NO release and superoxide production in rat aortaAmerican Journal of Physiology-Heart and Circulatory Physiology, 2004
- Effect of a High Salt Diet on Microvascular Antioxidant EnzymesJournal of Vascular Research, 2002
- Acute Elevations in Salt Intake and Reduced Renal Mass Hypertension Compromise Arteriolar Dilation in Rat Cremaster MuscleMicrovascular Research, 1999
- Angiotensin II-mediated hypertension in the rat increases vascular superoxide production via membrane NADH/NADPH oxidase activation. Contribution to alterations of vasomotor tone.Journal of Clinical Investigation, 1996
- Intracellular Ca2+ measurement with Indo-1 in substrate-attached cells: Advantages and special considerationsCell Calcium, 1990