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Mineralocorticoid receptor antagonism treats obesity-associated cardiac diastolic dysfunction
Shawn B Bender1, Vincent G DeMarco2, Jaume Padilla2
1From the Research Service, Harry S. Truman Memorial Veterans' Hospital, Columbia, MO (S.B.B., V.G.D.M., J.H., M.G., L.P., A.R.A., J.R.S.); Department of Biomedical Sciences (S.B.B.), Dalton Cardiovascular Research Center (S.B.B., J.P., J.R.S.), and Department of Nutrition and Exercise Physiology (J.P.), University of Missouri, Columbia; Division of Endocrinology, Diabetes and Metabolism (V.G.D.M., J.H., M.G., A.R.A., J.R.S.) and Division of Cardiovascular Medicine (L.P.), Department of Medicine, Department of Medical Pharmacology and Physiology (V.G.D.M., L.P., J.R.S.), and Department of Child Health (J.P.), University of Missouri School of Medicine, Columbia; Department of Kinesiology, University of Georgia, Athens, GA (N.T.J.); and Molecular Cardiology Research Institute, Tufts Medical Center, Boston, MA (I.Z.J.). benders@missouri.edu.
Insights
Mineralocorticoid receptor (MR) antagonism with low-dose spironolactone effectively treats cardiac diastolic dysfunction in obese rats. This blood pressure-independent therapy reduces cardiac fibrosis and inflammation, offering potential for patients with obesity and insulin resistance.
Area of Science:
- Cardiovascular Medicine
- Endocrinology
- Pharmacology
Background:
- Obesity and diabetes mellitus commonly lead to cardiac diastolic dysfunction (DD), a significant predictor of cardiovascular events.
- Current treatments for DD lack evidence-based efficacy, especially in the context of obesity.
- The renin-angiotensin-aldosterone system is activated in obesity, and mineralocorticoid receptor (MR) antagonists show cardioprotective effects in systolic heart failure.
Purpose of the Study:
- To investigate the efficacy of MR blockade using a blood pressure-independent low-dose spironolactone (LSp) in treating obesity-associated DD.
- To explore the mechanisms underlying LSp's effects on cardiac function, fibrosis, inflammation, and vascular responses in obese rats.
Main Methods:
- Zucker obese (ZO) rats with established DD were treated with LSp.
- Cardiac diastolic function was assessed using echocardiography.
- Cardiac fibrosis, hypertrophy, oxidative stress, endothelial function, inflammation, and immune cell markers were analyzed.
- Aldosterone infusion in Sprague-Dawley rats was used to model DD.
Main Results:
- LSp treatment normalized cardiac diastolic function in ZO rats.
- Reduced cardiac fibrosis and improved endothelium-dependent vasodilation were observed, without changes in hypertrophy or blood pressure.
- LSp decreased cardiac oxidative stress, improved endothelial insulin signaling, and attenuated systemic and adipose inflammation.
- Increased cardiac markers for alternatively activated macrophages and regulatory T cells were noted.
Conclusions:
- MR antagonism with LSp effectively treats established obesity-related DD through blood pressure-independent mechanisms.
- The therapy improves cardiac fibrosis, inflammation, and vascular function.
- This suggests a potential therapeutic strategy for patients with obesity and insulin resistance experiencing DD.
Abstract:
Patients with obesity and diabetes mellitus exhibit a high prevalence of cardiac diastolic dysfunction (DD), an independent predictor of cardiovascular events for which no evidence-based treatment exists. In light of renin-angiotensin-aldosterone system activation in obesity and the cardioprotective action of mineralocorticoid receptor (MR) antagonists in systolic heart failure, we examined the hypothesis that MR blockade with a blood pressure-independent low-dose spironolactone (LSp) would treat obesity-associated DD in the Zucker obese (ZO) rat. Treatment of ZO rats exhibiting established DD with LSp normalized cardiac diastolic function, assessed by echocardiography. This was associated with reduced cardiac fibrosis, but not reduced hypertrophy, and restoration of endothelium-dependent vasodilation of isolated coronary arterioles via a nitric oxide-independent mechanism. Further mechanistic studies revealed that LSp reduced cardiac oxidative stress and improved endothelial insulin signaling, with no change in arteriolar stiffness. Infusion of Sprague-Dawley rats with the MR agonist aldosterone reproduced the DD noted in ZO rats. In addition, improved cardiac function in ZO-LSp rats was associated with attenuated systemic and adipose inflammation and an anti-inflammatory shift in cardiac immune cell mRNAs. Specifically, LSp increased cardiac markers of alternatively activated macrophages and regulatory T cells. ZO-LSp rats had unchanged blood pressure, serum potassium, systemic insulin sensitivity, or obesity-associated kidney injury, assessed by proteinuria. Taken together, these data demonstrate that MR antagonism effectively treats established obesity-related DD via blood pressure-independent mechanisms. These findings help identify a particular population with DD that might benefit from MR antagonist therapy, specifically patients with obesity and insulin resistance.
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