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Published on: September 26, 2018
Cardiac Structure and Function Across the Spectrum of Aldosteronism: the Atherosclerosis Risk in Communities Study
Jenifer M Brown1, Magnus O Wijkman1,2, Brian L Claggett1
1Division of Cardiovascular Medicine (J.M.B., M.O.W., B.L.C., A.M.S., S.D.S.), Brigham and Women's Hospital, Boston, MA.
Insights
Primary aldosteronism markers were common and linked to heart changes. Renin suppression and high aldosterone indicate potential targets for preventing heart disease progression.
Area of Science:
- Cardiology
- Endocrinology
- Clinical Research
Background:
- Aldosterone and mineralocorticoid receptor activation are linked to myocardial fibrosis and cardiovascular events.
- Primary aldosteronism is a condition characterized by excessive aldosterone production.
Purpose of the Study:
- To investigate the association between markers of primary aldosteronism and cardiac structure, function, and clinical outcomes.
- To explore renin suppression and aldosterone levels as potential indicators of cardiovascular risk.
Main Methods:
- Analysis of 4547 participants from the ARIC study without prevalent heart failure.
- Echocardiography, aldosterone, and plasma renin activity measurements were performed.
- Cross-sectional and longitudinal analyses assessed relationships with cardiac parameters and outcomes like heart failure hospitalization and atrial fibrillation.
Main Results:
- Primary aldosteronism physiology was prevalent (11.6%) and associated with cardiac structural and functional changes.
- Renin suppression correlated with increased left ventricular mass, volumes, and atrial volume, and a lower E/A ratio.
- Higher aldosterone levels were linked to increased left ventricular mass, reduced global longitudinal strain, and a higher risk of incident atrial fibrillation.
Conclusions:
- Renin suppression and aldosterone excess, indicative of primary aldosteronism, are associated with cardiac alterations.
- These findings suggest that primary aldosteronism pathophysiology may be an early target for therapeutic intervention with mineralocorticoid receptor antagonists to mitigate fibrosis.
Background:
Aldosterone production and mineralocorticoid receptor activation are implicated in myocardial fibrosis and cardiovascular events.
Methods:
Cardiac structure and function were assessed in 4547 participants without prevalent heart failure (HF) in the ARIC study (Atherosclerosis Risk in Communities), with echocardiography, aldosterone, and plasma renin activity measurement (2011-2013). Subjects were characterized by plasma renin activity as suppressed (≤0.5 ng/mL per hour) or unsuppressed (>0.5 ng/mL per hour). Cross-sectional relationships with cardiac structure and function, and longitudinal relationships with outcomes (HF hospitalization; HF and all-cause death; HF, death, myocardial infarction, and stroke; and incident atrial fibrillation) were assessed. Models were adjusted for demographic and anthropometric characteristics and additively, for blood pressure and antihypertensives.
Results:
Evidence of primary aldosteronism physiology was prevalent (11.6% with positive screen) and associated with echocardiographic parameters. Renin suppression was associated with greater left ventricular mass, left ventricular volumes, and left atrial volume index, and a lower E/A ratio (adjusted P<0.001 for all). Higher aldosterone was associated with greater left ventricular mass and lower global longitudinal strain and lateral E'. The highest tertile of aldosterone was associated with a hazard ratio of 1.37 (95% CI, 1.06-1.77; 5.5-year follow-up) for incident atrial fibrillation relative to the lowest. Renin suppression was associated with HF (hazard ratio, 1.34 [95% CI, 1.05-1.72]; 7.3-year follow-up), although these relationships did not remain statistically significant after additional adjustment for hypertension.
Conclusions:
Renin suppression and aldosterone excess, consistent with primary aldosteronism pathophysiology, were associated with cardiac structural and functional alterations and may represent an early target for mitigation of fibrosis with mineralocorticoid receptor antagonists.
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