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Cardiovascular involvement in Erdheim-Chester diseases is associated with myocardial fibrosis and atrial dysfunction
Anna Palmisano1,2, Corrado Campochiaro2,3, Davide Vignale1,2
1Clinical and Experimental Radiology Unit, Experimental Imaging Center, IRCCS San Raffaele Scientific Institute, Via Olgettina 58 - 60, 20132, Milan, Italy.
Insights
Cardiovascular involvement in Erdheim-Chester disease (ECD) often affects the atrioventricular groove, leading to myocardial fibrosis and infarction. Atrial pseudomass in ECD patients causes atrial dysfunction and venous stenosis.
Area of Science:
- Cardiology
- Histiocytosis
- Cardiovascular Imaging
Background:
- Erdheim-Chester disease (ECD) is a rare multisystem histiocytosis.
- Cardiovascular involvement in ECD is not well-characterized.
- Systematic evaluation of cardiovascular manifestations in ECD is needed.
Purpose of the Study:
- To systematically describe cardiovascular involvement in a large cohort of Erdheim-Chester disease patients.
- To quantitatively and qualitatively assess cardiac features in ECD.
- To evaluate the impact of ECD on myocardial fibrosis and cardiac function.
Main Methods:
- Cardiac magnetic resonance (CMR) imaging was performed on 29 biopsy-proven ECD patients.
- A standardized protocol assessed disease localization, atrial and ventricular function.
- Non-dense and dense myocardial fibrosis were evaluated using late gadolinium enhancement (LGE).
Main Results:
- The right atrioventricular (AV) groove was the most common site (76%), followed by the right atrium (63%) and thoracic aorta (59%).
- Right AV groove involvement correlated with infero-septal and inferior left ventricular (LV) myocardial fibrosis and infarction.
- Atrial pseudomass was linked to atrial dysfunction and vena cava stenosis.
Conclusions:
- In ECD, AV groove involvement leads to LV fibrosis in downstream coronary territories, likely due to coronary encasement.
- Atrial pseudomass in ECD is associated with atrial dysfunction and atrio-caval junction stenosis.
- CMR is crucial for characterizing cardiovascular involvement in Erdheim-Chester disease.
Purpose:
Erdheim-Chester disease (ECD) is a rare multisystem histiocytosis, whose cardiovascular involvement has not been systematically characterized so far. We aimed to systematically (qualitatively and quantitatively) describe the features of cardiovascular involvement in a large cohort of ECD patients and to evaluate its impact on myocardial fibrosis extension and cardiac function.
Material And Methods:
Among 54 patients with biopsy-proven ECD, 29 patients (59 ± 12 years, 79% males) underwent 1.5-T CMR using a standardized protocol for qualitative and quantitative assessment of disease localization, evaluation of atrial and ventricular function, and assessment of non-dense and dense myocardial fibrosis.
Results:
The right atrioventricular (AV) groove was the most commonly affected cardiac site (76%) followed by the right atrial walls (63%), thoracic aorta (59%), and superior vena cava (38%). Right AV groove involvement, encasing the right ventricular artery, was associated with non-dense myocardial fibrosis in the infero-septal (20/26 patients) and the inferior (14/26 patients) mid-basal left ventricular (LV) wall. In two patients with right AV groove localization, LGE revealed myocardial infarction in the same myocardial segments. Three out of five patients with left AV groove involvement had non-dense LGE on the lateral LV mid-basal wall. Bulky right atrial pseudomass was associated with atrial dysfunction and superior and inferior vena cava stenosis.
Conclusions:
In ECD patients, AV groove localization is associated with LV wall fibrosis in the downstream coronary territories, suggesting hemodynamic alterations due to coronary encasement. Conversely, atrial pseudomass ECD localizations impact on atrial contractility causing atrial dysfunction and are associated with atrio-caval junction stenosis.
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