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A Minimally Invasive Model of Aortic Stenosis in Swine
Published on: October 20, 2023
Myocardial steatosis and left ventricular contractile dysfunction in patients with severe aortic stenosis
Masliza Mahmod1, Sacha Bull, Joseph J Suttie
1Division of Cardiovascular Medicine, Radcliffe Department of Medicine, John Radcliffe Hospital, University of Oxford Centre for Clinical Magnetic Resonance Research, Oxford, United Kingdom.
Insights
Cardiac steatosis, or fat buildup in the heart, is common in severe aortic stenosis (AS) and linked to impaired heart function. This condition and dysfunction improve after aortic valve replacement, suggesting a new treatment target for AS.
Area of Science:
- Cardiology
- Biochemistry
- Medical Imaging
Background:
- Aortic stenosis (AS) causes left ventricular (LV) hypertrophy and dysfunction.
- Cardiac steatosis (fat accumulation in the heart) is investigated as a potential contributor to AS pathophysiology.
- The reversibility of cardiac steatosis after aortic valve replacement (AVR) is assessed.
Purpose of the Study:
- To determine the presence and extent of cardiac steatosis in patients with severe AS.
- To assess the association between cardiac steatosis and left ventricular (LV) function, specifically strain.
- To evaluate the reversibility of cardiac steatosis and LV strain after AVR.
Main Methods:
- Cardiac 1H-magnetic resonance spectroscopy and imaging were used to quantify myocardial triglyceride content (steatosis) and cardiac function in 39 AS patients and 20 controls.
- Circumferential strain was measured using magnetic resonance tagging.
- Histological analysis of myocardial biopsies was performed for correlation.
Main Results:
- Patients with severe AS exhibited significantly higher myocardial steatosis compared to controls (0.89% vs. 0.45% in symptomatic and asymptomatic AS, respectively, vs. 0.45% in controls).
- Impaired LV circumferential strain was observed in AS patients (-16.4% to -18.1%) compared to controls (-20.7%).
- Steatosis was independently associated with impaired LV strain, and both steatosis and strain improved significantly after AVR.
Conclusions:
- Severe AS is characterized by significant myocardial steatosis, irrespective of symptoms.
- Myocardial steatosis is independently linked to impaired LV strain and is reversible post-AVR.
- Myocardial steatosis represents a novel pathophysiological mechanism in AS, potentially offering a therapeutic target to prevent LV dysfunction.
Background:
Aortic stenosis (AS) leads to left ventricular (LV) hypertrophy and dysfunction. We hypothesized that cardiac steatosis is involved in the pathophysiology and also assessed whether it is reversible after aortic valve replacement.
Methods And Results:
Thirty-nine patients with severe AS (symptomatic=25, asymptomatic=14) with normal LV ejection fraction and no significant coronary artery disease and 20 age- and sex-matched healthy controls underwent cardiac 1H-magnetic resonance spectroscopy and imaging for the determination of steatosis (myocardial triglyceride content) and cardiac function, including circumferential strain (measured by magnetic resonance tagging). Strain was lower in both symptomatic and asymptomatic AS (-16.4 ± 2.5% and -18.1 ± 2.9%, respectively, versus controls -20.7 ± 2.0%, both P<0.05). Myocardial steatosis was found in both symptomatic and asymptomatic patients with AS (0.89 ± 0.42% in symptomatic AS; 0.75 ± 0.36% in asymptomatic AS versus controls 0.45 ± 0.17, both P<0.05). Importantly, multivariable analysis indicated that steatosis was an independent correlate of impaired LV strain. Spectroscopic measurements of myocardial triglyceride content correlated significantly with histological analysis of biopsies obtained during aortic valve replacement. At 8.0 ± 2.1 months after aortic valve replacement, steatosis and strain had recovered toward normal.
Conclusions:
Pronounced myocardial steatosis is present in severe AS, regardless of symptoms, and is independently associated with the degree of LV strain impairment. Myocardial triglyceride content measured by magnetic resonance spectroscopy correlates with histological quantification. Steatosis and strain impairment are reversible after aortic valve replacement. Our findings suggest a novel pathophysiological mechanism in AS, myocardial steatosis, which may be amenable to treatment, thus potentially delaying onset of LV dysfunction.
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