Impact of diabetes on remodelling, microvascular function and exercise capacity in aortic stenosis
Abhishek Dattani1, Emer M Brady1, Aseel Alfuhied1
1Department of Cardiovascular Sciences and NIHR Leicester Biomedical Research Centre, University of Leicester, Leicester, UK.
Insights
Diabetes in patients with aortic stenosis (AS) leads to reduced exercise capacity and increased myocardial fibrosis, but does not significantly impact cardiovascular events. However, diabetes is linked to a higher risk of all-cause mortality.
Area of Science:
- Cardiology
- Diabetology
- Medical Research
Background:
- Aortic stenosis (AS) is a significant cardiovascular condition.
- Diabetes mellitus is a common comorbidity that can affect cardiovascular health.
- Understanding the interplay between diabetes and AS is crucial for patient management.
Purpose of the Study:
- To characterize cardiac remodeling, exercise capacity, and fibroinflammatory biomarkers in patients with AS, comparing those with and without diabetes.
- To assess the impact of diabetes on clinical outcomes in patients with moderate-to-severe AS.
Main Methods:
- Echocardiography, stress cardiovascular magnetic resonance (CMR), and cardiopulmonary exercise testing were performed.
- Plasma biomarker analysis was conducted.
- Survival analysis included a composite of cardiovascular mortality, myocardial infarction, heart failure hospitalization, syncope, or arrhythmia as the primary endpoint.
Main Results:
- The diabetes group (n=56) exhibited higher extracellular volume fraction, lower myocardial perfusion reserve, and reduced peak oxygen consumption compared to the non-diabetes group (n=198).
- Elevated renin levels were observed in patients with diabetes.
- While diabetes was not associated with the primary composite cardiovascular outcome, it was independently associated with all-cause mortality (HR 2.04).
Conclusions:
- In moderate-to-severe AS patients, diabetes is associated with impaired exercise capacity, increased diffuse myocardial fibrosis, and microvascular dysfunction.
- Despite these findings, diabetes did not significantly increase the risk of major cardiovascular events in this cohort.
- Diabetes independently predicts all-cause mortality in patients with aortic stenosis.
Objective:
To characterise cardiac remodelling, exercise capacity and fibroinflammatory biomarkers in patients with aortic stenosis (AS) with and without diabetes, and assess the impact of diabetes on outcomes.
Methods:
Patients with moderate or severe AS with and without diabetes underwent echocardiography, stress cardiovascular magnetic resonance (CMR), cardiopulmonary exercise testing and plasma biomarker analysis. Primary endpoint for survival analysis was a composite of cardiovascular mortality, myocardial infarction, hospitalisation with heart failure, syncope or arrhythmia. Secondary endpoint was all-cause death.
Results:
Diabetes (n=56) and non-diabetes groups (n=198) were well matched for age, sex, ethnicity, blood pressure and severity of AS. The diabetes group had higher body mass index, lower estimated glomerular filtration rate and higher rates of hypertension, hyperlipidaemia and symptoms of AS. Biventricular volumes and systolic function were similar, but the diabetes group had higher extracellular volume fraction (25.9%±3.1% vs 24.8%±2.4%, p=0.020), lower myocardial perfusion reserve (2.02±0.75 vs 2.34±0.68, p=0.046) and lower percentage predicted peak oxygen consumption (68%±21% vs 77%±17%, p=0.002) compared with the non-diabetes group. Higher levels of renin (log10renin: 3.27±0.59 vs 2.82±0.69 pg/mL, p<0.001) were found in diabetes. Multivariable Cox regression analysis showed diabetes was not associated with cardiovascular outcomes, but was independently associated with all-cause mortality (HR 2.04, 95% CI 1.05 to 4.00; p=0.037).
Conclusions:
In patients with moderate-to-severe AS, diabetes is associated with reduced exercise capacity, increased diffuse myocardial fibrosis and microvascular dysfunction, but not cardiovascular events despite a small increase in mortality.
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