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Fabry's disease cardiomyopathy: echocardiographic detection of endomyocardial glycosphingolipid compartmentalization
Maurizio Pieroni1, Cristina Chimenti, Francesco De Cobelli
1Ospedale Multimedica, Milan, Italy.
Insights
Echocardiography can now identify Fabry's disease cardiomyopathy (FC) using a unique binary endocardial border appearance. This noninvasive finding accurately detects FC, distinguishing it from other heart conditions.
Area of Science:
- Cardiology
- Medical Imaging
- Genetics
Background:
- Fabry's disease cardiomyopathy (FC) diagnosis is challenging, often requiring invasive methods.
- Distinguishing FC from other forms of left ventricular hypertrophy (LVH) using noninvasive imaging is currently unavailable.
Purpose of the Study:
- To identify specific echocardiographic features of Fabry's disease cardiomyopathy (FC).
- To establish a noninvasive diagnostic hallmark for FC.
Main Methods:
- Echocardiography was performed on 40 patients with Fabry's disease.
- Control groups included patients with hypertrophic cardiomyopathy (HCM), hypertensive LVH, and healthy subjects.
- Cardiac catheterization and endomyocardial biopsy were used for comparison.
Main Results:
- A binary appearance of the endocardial border was observed in 83% of FC patients (95% with LVH).
- This feature was absent in all control groups.
- The echocardiographic finding correlated with endomyocardial glycosphingolipid compartmentalization.
Conclusions:
- The echocardiographic binary appearance of the left ventricular endocardial border is a sensitive and specific hallmark for diagnosing Fabry's disease cardiomyopathy.
- This finding aids in noninvasive diagnosis, reducing reliance on genetic and invasive studies.
Objectives:
We sought to identify echocardiographic hallmarks of Fabry's disease cardiomyopathy (FC).
Background:
The recognition of FC from other forms of left ventricular hypertrophy (LVH) by noninvasive imaging techniques is not yet available, and diagnosis, mostly in the absence of systemic manifestations, still relies on genetic and invasive studies.
Methods:
Forty consecutive patients (mean age 39 +/- 15 years, 22 men and 18 women) with an established diagnosis of Fabry's disease were submitted to echocardiographic evaluation. Control population consisted of 40 consecutive patients with hypertrophic cardiomyopathy (HCM), 40 hypertensive patients with echocardiographic evidence of LVH, and 40 age- and gender-matched healthy subjects with no LVH. All HCM patients and FC with LVH and/or cardiac symptoms underwent cardiac catheterization with left ventricular endomyocardial biopsy.
Results:
Echocardiography showed in 83% of FC patients (95% of FC patients with LVH) a binary appearance of endocardial border absent in all HCM, hypertensive, and healthy subjects. The sensitivity and specificity of this echocardiographic feature in detecting Fabry patients in study population were 94% and 100%, respectively. Comparison of echocardiographic with histologic and ultrastructural findings showed the binary appearance to reflect an endomyocardial glycosphingolipids compartmentalization, consisting of thickened glycolipid-rich endocardium, free glycosphingolipid subendocardial storage, and an inner severely affected myocardial layer with a clear subendocardial-midwall layer gradient of disease severity.
Conclusions:
Echocardiographic binary appearance of left ventricular endocardial border, reflecting endomyocardial glycosphingolipids compartmentalization, represents a sensitive and specific diagnostic hallmark of Fabry's disease cardiomyopathy.
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