The goal is to investigate the mechanisms by which the renin-angiotensin system (RAS) causes changes in intrarenal perfusion and tubular filtration-reabsorption dynamics. Renal artery stenosis in swine is predicted to stimulate angiotensin II (Ang II) production that stimulates superoxide isoprostane and endothelin (ET) production. Regional production of these vasoconstrictor agents will cause cortical ischemia with relative preservation of medullary perfusion. Electron beam computerized tomography (EBCT), a non-invasive x-ray, 3-dimentional tomographer (Imatron c-150) with high temporal resolution, has been developed recently and will be used to define changes in intrarenal blood flow and tubular flow patterns. A computerized analysis of vascular casts of microfil will help localize changes in the microcirculation.
Aim # 1 examines changes in intrarenal hemodynamics and relate them with components of the RAS / oxidative stress cascade and ET in the stenotic and contralateral kidneys of pigs with 2-kidney-1-clip Goldblatt hypertension.
Aim # 2 determines if reestablishing blood flow to the stenotic kidney normalizes renal blood flow and its intrarenal distribution in both the stenotic and control kidneys. Unclipping is expected to rapidly normalize arterial pressure is related to changes in the RAS and pressure natriuresis.
Aim # 3 assesses intrarenal hemodynamics and status of the RAS/oxidative stress cascades in humans with focal unilateral renovascular stenosis. The human results are compared with measures in the swine model of 2-kidney-1 kidney clip hypertension.
Aim # 4 examines swine with 2 kidney and 1 kidney clip hypertension with interventions to dissect causal relations between the RAS and / or oxidative stress and intrarenal flows.
Aim # 5 is to characterize hypertension in swine produced by low dose Ang II infusion and the roles of oxidative stress and ET in the pathogenesis.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
5R01HL016496-28
Application #
6619367
Study Section
Cardiovascular and Renal Study Section (CVB)
Program Officer
Barouch, Winifred
Project Start
1979-06-01
Project End
2004-08-31
Budget Start
2003-08-01
Budget End
2004-08-31
Support Year
28
Fiscal Year
2003
Total Cost
$326,575
Indirect Cost
Name
Mayo Clinic, Rochester
Department
Type
DUNS #
006471700
City
Rochester
State
MN
Country
United States
Zip Code
55905
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Lavi, Ronit; Zhu, Xiang-Yang; Chade, Alejandro R et al. (2010) Simvastatin decreases endothelial progenitor cell apoptosis in the kidney of hypertensive hypercholesterolemic pigs. Arterioscler Thromb Vasc Biol 30:976-83
Gomez, Sabas I; Warner, Lizette; Haas, John A et al. (2009) Increased hypoxia and reduced renal tubular response to furosemide detected by BOLD magnetic resonance imaging in swine renovascular hypertension. Am J Physiol Renal Physiol 297:F981-6
Textor, Stephen C (2009) Current approaches to renovascular hypertension. Med Clin North Am 93:717-32, Table of Contents
Warner, Lizette; Gomez, Sabas I; Bolterman, Rodney et al. (2009) Regional decreases in renal oxygenation during graded acute renal arterial stenosis: a case for renal ischemia. Am J Physiol Regul Integr Comp Physiol 296:R67-71
Reisin, Efrain; Jack, Avanelle V (2009) Obesity and hypertension: mechanisms, cardio-renal consequences, and therapeutic approaches. Med Clin North Am 93:733-51
Textor, Stephen C; Glockner, James F; Lerman, Lilach O et al. (2008) The use of magnetic resonance to evaluate tissue oxygenation in renal artery stenosis. J Am Soc Nephrol 19:780-8
Gomez, S I; Strick, D M; Romero, J C (2008) Role of nitric oxide and prostaglandin in the maintenance of cortical and renal medullary blood flow. Braz J Med Biol Res 41:170-5
Textor, Stephen C (2008) Atherosclerotic renal artery stenosis: overtreated but underrated? J Am Soc Nephrol 19:656-9
Bentley, Michael D; Jorgensen, Steven M; Lerman, Lilach O et al. (2007) Visualization of three-dimensional nephron structure with microcomputed tomography. Anat Rec (Hoboken) 290:277-83

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