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Prevalence of Fabry disease in a predominantly hypertensive population with left ventricular hypertrophy
Wim Terryn1, Gert Deschoenmakere, Jan De Keyser
1Department of Internal Medicine, Division of Nephrology, Regionaal Ziekenhuis Jan Yperman, Ieper, Belgium. wim.terryn@gmail.com
Insights
Fabry disease (FD) affects 0.9% of patients with left ventricular hypertrophy (LVH). Screening for FD in LVH patients is recommended, regardless of arterial hypertension or hypertrophy type.
Area of Science:
- Cardiology
- Genetics
- Rare Diseases
Background:
- Fabry disease (FD) is a genetic disorder causing progressive left ventricular hypertrophy (LVH).
- Previous FD prevalence estimates in LVH populations vary widely due to differing study criteria and methods.
- This study aimed to determine FD prevalence in an unselected LVH cohort using optimal screening.
Observation:
- A total of 362 men and 178 women with LVH were screened.
- Screening involved a two-tier approach for males (α-Galactosidase A activity and GLA gene mutation analysis) and mutation analysis for females.
- Six patients were diagnosed with GLA gene alterations, including classical FD and attenuated phenotypes.
Findings:
- The prevalence of Fabry disease in this unselected LVH population was 0.9%.
- All identified Fabry patients had arterial hypertension (AHT), and one had hypertrophic obstructive cardiomyopathy (HOCM).
- Novel mutations and a potential polymorphism were identified in the GLA gene.
Implications:
- Arterial hypertension and specific hypertrophy types should not exclude patients from FD screening.
- These findings support broader screening for Fabry disease in patients presenting with left ventricular hypertrophy.
- Accurate prevalence data can inform clinical guidelines and improve early diagnosis of Fabry disease.
Background:
Patients with Fabry disease (FD) develop progressive left ventricular hypertrophy (LVH). In screening studies in patients with LVH, the prevalence of FD ranges from 0 to 12%. This variability is attributable to different factors like diverging inclusion and exclusion criteria, the evaluation of selected populations and suboptimal screening methods. In this study, we aimed to determine the prevalence of FD in an unselected population of everyday clinical practice presenting LVH, defined as a maximal end-diastolic septal or posterior wall thickness ≥ 13 mm, without exclusion of patients with arterial hypertension or valvular pathology, and using optimal screening methods.
Methods:
In adult males, a two-tier approach was used; α-Galactosidase A (aGAL A) activity was measured using a dried bloodspot test (DBS) and diagnosis was confirmed by mutation analysis of the GLA gene. In females, mutation analysis was the primary screening tool.
Results:
362 men and 178 women were screened. Six patients were diagnosed with a genetic sequence alteration of the GLA gene. One man had a novel mutation, GLA p.Ala5Glu (c.44C>A), presenting as classical FD. Another man and three women had the previously described GLA p.Ala143Thr (c.427G>A) mutation, which generally presents as an attenuated phenotype. One woman had a novel sequence alteration c.639+6A>C, which appeared to be a polymorphism. All true Fabry patients had arterial hypertension (AHT), and one had hypertrophic obstructive cardiomyopathy (HOCM).
Conclusions:
In a group of unselected patients with LVH, we found a prevalence of Fabry disease of 0.9%. AHT or type of hypertrophy should not be an exclusion criterion for screening for FD.
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