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High Fat Diet Enhances Cardiac Abnormalities In Shr Rats: Protective Role Of Heme Oxygenaseadiponectin Axis, Jian Cao, Komal Sodhi, Nitin Puri, Sumit R. Monu, Rita Rezzani, Nader G. Abraham Dec 2011

High Fat Diet Enhances Cardiac Abnormalities In Shr Rats: Protective Role Of Heme Oxygenaseadiponectin Axis, Jian Cao, Komal Sodhi, Nitin Puri, Sumit R. Monu, Rita Rezzani, Nader G. Abraham

Pharmaceutical Science and Research

Background

High dietary fat intake is a major risk factor for development of cardiovascular and metabolic dysfunction including obesity, cardiomyopathy and hypertension.

Methods

The present study was designed to examine effect of high fat (HF) diet on cardio-vascular structure and function in spontaneously hypertensive rats (SHR), fed HF diet for 15 weeks, a phenotype designed to mimic metabolic syndrome.

Results

Development of metabolic syndrome like phenotype was confirmed using parameters, including body weight, total cholesterol and blood pressure levels. High fat diet impaired vascular relaxation by acetylcholine and exacerbated cardiac dysfunction in SHRs as evidenced by lower left ventricular function, …


Upregulation Of Heme Oxygenase-1 Combined With Increased Adiponectin Lowers Blood Pressure In Diabetic Spontaneously Hypertensive Rats Through A Reduction In Endothelial Cell Dysfunction, Apoptosis And Oxidative Stress, Jian Cao, George Drummond, Kazuyoshi Inoue, Komal Sodhi, Xiao Ying Li, Shinji Omura Dec 2008

Upregulation Of Heme Oxygenase-1 Combined With Increased Adiponectin Lowers Blood Pressure In Diabetic Spontaneously Hypertensive Rats Through A Reduction In Endothelial Cell Dysfunction, Apoptosis And Oxidative Stress, Jian Cao, George Drummond, Kazuyoshi Inoue, Komal Sodhi, Xiao Ying Li, Shinji Omura

Pharmaceutical Science and Research

This study was designed to investigate the effect of increased levels of HO-1 on hypertension exacerbated by diabetes. Diabetic spontaneously hypertensive rat (SHR) and WKY (control) animals were treated with streptozotocin (STZ) to induce diabetes and stannous chloride (SnCl2) to upregulate HO-1. Treatment with SnCl2 not only attenuated the increase of blood pressure (p<0.01), but also increased HO-1 protein content, HO activity and plasma adiponectin levels, decreased the levels of superoxide and 3-nitrotyrosine (NT), respectively. Reduction in oxidative stress resulted in the increased expression of Bcl-2 and AKT with a concomitant reduction in circulating endothelial cells (CEC) in the peripheral blood (p<0.005) and an improvement of femoral reactivity (response to acetylcholine). Thus induction of HO-1 accompanied with increased plasma adiponectin levels in diabetic hypertensive rats alters the phenotype through a reduction in oxidative stress, thereby permitting endothelial cells to maintain an anti-apoptotic environment and the restoration of endothelial responses thus preventing hypertension.