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Biventricular Assessment of Cardiac Function and Pressure-Volume Loops by Closed-Chest Catheterization in Mice
Published on: June 15, 2020
Cardiac magnetic resonance reveals biventricular impairment in Cushing's syndrome: a multicentre case-control study
Tiziana Feola1,2, Alessia Cozzolino1, Dario De Alcubierre1,2
1Department of Experimental Medicine, Sapienza University of Rome, Rome, Italy.
Insights
Cushing's syndrome (CS) causes heart changes, including enlarged heart chambers and reduced function, detectable by cardiac MRI. These cardiac remodeling effects are linked to excess cortisol, independent of other risk factors.
Area of Science:
- Cardiology
- Endocrinology
- Medical Imaging
Background:
- Cushing's syndrome (CS) is linked to significant cardiovascular (CV) disease and mortality.
- Chronic excess glucocorticoid (GC) exposure can lead to cardiac remodeling.
- Cardiac magnetic resonance (CMR) is crucial for evaluating cardiac structure and function.
Purpose of the Study:
- To characterize CMR findings of cardiac remodeling in patients with treated Cushing's syndrome.
- To identify cardiac structural and functional changes specifically due to prior GC excess.
Main Methods:
- A prospective, multicenter, case-control study compared patients with cured CS to those with non-functioning adrenal incidentalomas (NFAI).
- Participants were matched for age, sex, BMI, and CV risk factors.
- All patients had stable conditions and at least 24 months of follow-up.
Main Results:
- Patients with CS showed higher indexed LV end-systolic volume and LV mass compared to NFAI.
- Indexed RV end-diastolic and end-systolic volumes were also elevated in the CS group.
- Both LV and RV ejection fractions were reduced in patients with CS, indicating impaired cardiac function.
Conclusions:
- Cushing's syndrome is associated with biventricular cardiac structural and functional abnormalities.
- These CMR-identified changes are likely a direct result of chronic cortisol excess.
- The observed cardiac remodeling is independent of traditional cardiovascular risk factors and metabolic status.
Purpose:
Cushing's syndrome (CS) is associated with severe cardiovascular (CV) morbidity and mortality. Cardiac magnetic resonance (CMR) is the non-invasive gold standard for assessing cardiac structure and function; however, few CMR studies explore cardiac remodeling in patients exposed to chronic glucocorticoid (GC) excess. We aimed to describe the CMR features directly attributable to previous GC exposure in patients with cured or treated endogenous CS.
Methods:
This was a prospective, multicentre, case-control study enrolling consecutive patients with cured or treated CS and patients harboring non-functioning adrenal incidentalomas (NFAI), comparable in terms of sex, age, CV risk factors, and BMI. All patients were in stable condition and had a minimum 24-month follow-up.
Results:
Sixteen patients with CS and 15 NFAI were enrolled. Indexed left ventricle (LV) end-systolic volume and LV mass were higher in patients with CS (p = 0.027; p = 0.013); similarly, indexed right ventricle (RV) end-diastolic and end-systolic volumes were higher in patients with CS compared to NFAI (p = 0.035; p = 0.006). Morphological alterations also affected cardiac function, as LV and RV ejection fractions decreased in patients with CS (p = 0.056; p = 0.044). CMR features were independent of metabolic status or other CV risk factors, with fasting glucose significantly lower in CS remission than NFAI (p < 0.001) and no differences in lipid levels or blood pressure.
Conclusion:
CS is associated with biventricular cardiac structural and functional impairment at CMR, likely attributable to chronic exposure to cortisol excess independently of known traditional risk factors.
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