Microvascular disease may account for the synergistic increase in incidence of cardiac events observed during exposure to the common cardiovascular risk factors hypercholesterolemia (HC) and hypertension (HT) in the absence of significant coronary artery stenosis (CAS). However, the mechanisms underlying these effects have not been fully elucidated, because microvessels (mu-v) (<500 pm) are difficult to resolve with conventional techniques. The hypothesis underlying this proposal is that HC and HT synergistically impair myocardial mu-v function and architecture, interfere with adaptive responses, and exacerbate functional consequences of CAS for the myocardium. Furthermore, that sophisticated computed tomography (CT) and mu-v modeling methods would be useful to resolve the function and structure of myocardial mu-v and explore the effects of concurrent HC and HT. These hypotheses will be tested in a unique pig model of concurrent diet-induced HC and renovascular HT, using novel CT imaging techniques. Electron beam CT (EBCT) will be used to quantify noninvasively myocardial perfusion, transmural distribution, size-specific mu-v volume fraction, function, and permeability in response to increased cardiac demand, acute CAS, or chronic CAS. The function of small (<150 mu-m) and large (150-500 mu-m) mu-v will be studied both in vivo and in isolated vessels in vitro. Furthermore, micro-CT will be used to visualize the myocardial muv in situ and study their 3D branching and architecture, which may modulate myocardial adaptation to CAS. Chronic antioxidant intervention will be used to assess the role of increased oxidative stress as an underlying mechanism in the cross talk between HC and HT. Furthermore, the imaging studies will be correlated with in vitro studies of myocardial tissue redox status, vascular endothelial function, and growth-factor activity. These studies could greatly advance our understanding of the deleterious interaction between HC and HT, and contribute towards development of imaging strategies for physiologic assessment of the evolution and mechanisms of early atherosclerosis.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
5R01HL077131-02
Application #
6891297
Study Section
Diagnostic Radiology Study Section (RNM)
Program Officer
Lin, Michael
Project Start
2004-06-01
Project End
2008-05-31
Budget Start
2005-06-01
Budget End
2006-05-31
Support Year
2
Fiscal Year
2005
Total Cost
$331,875
Indirect Cost
Name
Mayo Clinic, Rochester
Department
Type
DUNS #
006471700
City
Rochester
State
MN
Country
United States
Zip Code
55905
Zhang, Xin; Gibson, Matthew E; Li, Zi-Lun et al. (2016) Autophagy Portends the Level of Cardiac Hypertrophy in Experimental Hypertensive Swine Model. Am J Hypertens 29:81-9
Sun, Dong; Eirin, Alfonso; Zhu, Xiang-Yang et al. (2015) Experimental coronary artery stenosis accelerates kidney damage in renovascular hypertensive swine. Kidney Int 87:719-27
Collin, Julia; Gössl, Mario; Matsuo, Yoshiki et al. (2015) Osteogenic monocytes within the coronary circulation and their association with plaque vulnerability in patients with early atherosclerosis. Int J Cardiol 181:57-64
Cassar, Andrew; Morgenthaler, Timothy I; Rihal, Charanjit S et al. (2014) Coronary endothelial function in patients with obstructive sleep apnea. Coron Artery Dis 25:16-22
Eirin, Alfonso; Ebrahimi, Behzad; Zhang, Xin et al. (2014) Mitochondrial protection restores renal function in swine atherosclerotic renovascular disease. Cardiovasc Res 103:461-72
Zhang, Xin; Li, Zi-Lun; Crane, John A et al. (2014) Valsartan regulates myocardial autophagy and mitochondrial turnover in experimental hypertension. Hypertension 64:87-93
Ebrahimi, Behzad; Textor, Stephen C; Lerman, Lilach O (2014) Renal relevant radiology: renal functional magnetic resonance imaging. Clin J Am Soc Nephrol 9:395-405
Choi, Byoung-Joo; Matsuo, Yoshiki; Aoki, Tatsuo et al. (2014) Coronary endothelial dysfunction is associated with inflammation and vasa vasorum proliferation in patients with early atherosclerosis. Arterioscler Thromb Vasc Biol 34:2473-7
Guddeti, Raviteja R; Matsuo, Yoshiki; Matsuzawa, Yasushi et al. (2014) Ischemic cardiomyopathy is associated with coronary plaque progression and higher event rate in patients after cardiac transplantation. J Am Heart Assoc 3:
Li, Zi-Lun; Ebrahimi, Behzad; Zhang, Xin et al. (2014) Obesity-metabolic derangement exacerbates cardiomyocyte loss distal to moderate coronary artery stenosis in pigs without affecting global cardiac function. Am J Physiol Heart Circ Physiol 306:H1087-101

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