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ECG Changes during Adult Life in Fabry Disease: Results from a Large Longitudinal Cohort Study
Mohamed El Sayed1,2, Pieter G Postema3,4, Mareen Datema1,2
1Department of Internal Medicine, Division of Endocrinology and Metabolism, Amsterdam UMC Location University of Amsterdam, Meibergdreef 9, 1105 AZ Amsterdam, The Netherlands.
Insights
Electrocardiogram (ECG) changes in Fabry disease (FD) appear with age and sex. Monitoring the rate of ECG changes can help detect FD progression and assess treatment effectiveness.
Area of Science:
- Cardiology
- Genetics
- Medical Diagnostics
Background:
- Fabry disease (FD) is an X-linked lysosomal storage disorder.
- FD frequently leads to severe cardiomyopathy.
- Early identification of cardiac involvement in FD is crucial.
Purpose of the Study:
- To identify electrocardiogram (ECG) markers for early cardiac involvement in FD.
- To track disease progression using ECG parameters.
- To establish age- and sex-dependent ECG changes in FD.
Main Methods:
- Retrospective analysis of 1995 ECGs from 133 classical FD patients over 20 years.
- Comparison with 3893 healthy control subjects.
- Statistical analysis using generalized linear mixed models to assess ECG parameters (P-wave duration, PR-interval, QRS-duration, QTc, Cornell index, spatial QRS-T angle, frontal QRS-axis) in relation to age, FD, and sex.
Main Results:
- Younger FD patients (<40 years) showed higher Cornell index and more negative frontal QRS-axis.
- FD patients exhibited a greater rate of change in most ECG parameters compared to controls.
- Older FD patients (men ≥5th decade, women ≥6th decade) had prolonged P-wave duration, QRS-duration, QTc, and higher spatial QRS-T angle.
Conclusions:
- ECG abnormalities in FD are influenced by age and sex.
- Monitoring the rate of change in ECG parameters can aid in detecting FD progression.
- ECG monitoring is valuable for evaluating treatment efficacy in FD patients.
Abstract:
Background: Fabry disease (FD) is an X-linked, lysosomal storage disorder leading to severe cardiomyopathy in a significant proportion of patients. To identify ECG markers that reflect early cardiac involvement and disease progression, we conducted a long term retrospective study in a large cohort of FD patients. Methods: A total of 1995 ECGs from 133 patients with classical FD (64% females, 80% treated with enzyme replacement therapy), spanning 20 years of follow-up, were compared to ECGs from 3893 apparently healthy individuals. Generalized linear mixed models were used to evaluate the effect of age, FD and sex on: P-wave duration, PR-interval, QRS-duration, QTc, Cornell index, spatial QRS-T angle and frontal QRS-axis. Regression slopes and absolute values for each parameter were compared between FD patients and control subjects. Results: At a younger age (<40 years), the Cornell index was higher and frontal QRS-axis more negative in FD patients compared to controls (p < 0.05). For the other ECG parameters, the rate of change, more than the absolute value, was greater in FD patients compared to controls (p < 0.05). From the fifth decade (men) or sixth (women) onwards, absolute values for P-wave duration, QRS-duration, QTc and spatial QRS-T angle were longer and higher in FD patients compared to control subjects. Conclusions: ECG abnormalities indicative of FD are age and sex dependent. Tracking the rate of change in ECG parameters could be a good way to detect disease progression, guiding treatment initiation. Moreover, monitoring ECG changes in FD can be used to evaluate the effectiveness of treatment.
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