Macrovascular disease due to accelerated atherosclerosis is the major cause of mortality in patients with both types 1 and 2 diabetes. Despite this, the factors that place the individual with diabetes at risk for atherosclerotic vascular disease are incompletely understood. This program-is built around two central themes: (1) that a decrease in the biological activity of endothelium-derived nitric oxide (NO) is a common defect in patients with diabetes that accelerates atherosclerosis and (2) that in diabetes, this decrease in NO is due to an increase in oxidative stress related to hyperglycemia and dyslipidemia. The four closely-linked projects in this program each address these themes. Project 1 will examine the hypothesis that hyperglycemia and dyslipidemia accelerate atherosclerosis by increasing the susceptibility of LDL to oxidation. In addition, the effects of hyperglycemia on cellular responses to oxidized LDL will be explore& Project 2 will evaluate the effects of hyperglycemia and other alterations in the diabetic milieu on the L-arginine/NO pathway (arginine transport and NO synthesis) in both cultured endothelial cells and intact aorta. In concert with project 3, it will assess in hyperlipidemic, diabetic rabbits whether the acceleration of atherosclerosis and its prevention by pharmacological agents are antedated by changes in this pathway. Project 3 will characterize the diabetic rabbit model in which the ingestion of a high-sucrose, high-fat diet accelerates atherosclerosis. Use will be made of this model to examine the relationship of atherogenesis to the expression of adhesion molecules and to determine the effect on the atherogenic process of interventions aimed at NO and oxidized lipoproteins. Project 4 will examine the relation of hyperglycemia, dyslipidemia and oxidative stress to endothelial cell dysfunction in humans using both a non-invasive brachial-artery ultrasound method and brachial artery infusions of vasoactive substances with measurements of forearm blood flow. Results with the two methods will compared. In addition, the effects of treatments that diminish oxidative stress and lower plasma lipids and/or glucose will be determined. The studies in this program should provide important new insights into the pathogenesis of macrovascular disease in diabetes. They will also provide the groundwork both for detecting early and reversible manifestations of this complication in humans (Project 4) and for devising therapeutic approaches for preventing it.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Program Projects (P01)
Project #
5P01HL055854-03
Application #
2771493
Study Section
Special Emphasis Panel (ZHL1-CSR-Y (M2))
Project Start
1996-09-30
Project End
2001-08-31
Budget Start
1998-09-01
Budget End
1999-08-31
Support Year
3
Fiscal Year
1998
Total Cost
Indirect Cost
Name
Boston Medical Center
Department
Type
DUNS #
005492160
City
Boston
State
MA
Country
United States
Zip Code
02118
Ying, Jia; Clavreul, Nicolas; Sethuraman, Mahadevan et al. (2007) Thiol oxidation in signaling and response to stress: detection and quantification of physiological and pathophysiological thiol modifications. Free Radic Biol Med 43:1099-108
Heydrick, Stanley J; Weiss, Norbert; Thomas, Shane R et al. (2004) L-Homocysteine and L-homocystine stereospecifically induce endothelial nitric oxide synthase-dependent lipid peroxidation in endothelial cells. Free Radic Biol Med 36:632-40
Itani, Samar I; Ruderman, Neil B; Schmieder, Frank et al. (2002) Lipid-induced insulin resistance in human muscle is associated with changes in diacylglycerol, protein kinase C, and IkappaB-alpha. Diabetes 51:2005-11
Gupta, Sandeep; Chough, Eugene; Daley, Jennifer et al. (2002) Hyperglycemia increases endothelial superoxide that impairs smooth muscle cell Na+-K+-ATPase activity. Am J Physiol Cell Physiol 282:C560-6
Dagher, Z; Ruderman, N; Tornheim, K et al. (2001) Acute regulation of fatty acid oxidation and amp-activated protein kinase in human umbilical vein endothelial cells. Circ Res 88:1276-82
Gokce, N; Duffy, S J; Hunter, L M et al. (2001) Acute hypertriglyceridemia is associated with peripheral vasodilation and increased basal flow in healthy young adults. Am J Cardiol 88:153-9
Munzel, T; Keaney Jr, J F (2001) Are ACE inhibitors a ""magic bullet"" against oxidative stress? Circulation 104:1571-4
Huang, A; Xiao, H; Samii, J M et al. (2001) Contrasting effects of thiol-modulating agents on endothelial NO bioactivity. Am J Physiol Cell Physiol 281:C719-25
Duffy, S J; Biegelsen, E S; Holbrook, M et al. (2001) Iron chelation improves endothelial function in patients with coronary artery disease. Circulation 103:2799-804
Adachi, T; Matsui, R; Weisbrod, R M et al. (2001) Reduced sarco/endoplasmic reticulum Ca(2+) uptake activity can account for the reduced response to NO, but not sodium nitroprusside, in hypercholesterolemic rabbit aorta. Circulation 104:1040-5

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