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Published on: March 14, 2017
The corrected QT interval prolongation in adolescents with cardiac iron overload β-thalassemia major
Najib Advani1, Najib Advani1, Murti Andriastuti1
1Department of Child Health, Faculty of Medicine Universitas Indonesia-Cipto Mangunkusumo Hospital, Jakarta, Indonesia.
Insights
QTc interval prolongation indicates cardiac iron overload in adolescent beta-thalassemia major patients. This electrocardiogram (ECG) finding can serve as an accessible early detection marker for heart conditions.
Area of Science:
- Cardiology
- Pediatrics
- Medical Imaging
Background:
- Iron-induced cardiomyopathy is a major cause of mortality in beta-thalassemia major.
- T2* magnetic resonance imaging (MRI) is the gold standard for iron load detection but is costly and inaccessible in many regions.
- Previous research suggests QTc interval may predict cardiac iron overload.
Purpose of the Study:
- To assess the diagnostic value of QTc interval for early detection of cardiac iron overload in adolescents with beta-thalassemia major.
- To evaluate QTc interval as a potential screening tool in resource-limited settings.
Main Methods:
- Prospective evaluation of QTc interval in 50 beta-thalassemia major patients (aged 10-18 years).
- All participants underwent 12-lead ECG, echocardiogram, and cardiac MRI T2* within three months.
- Patients were classified into cardiac iron overload (MRI T2* < 20 ms) and non-cardiac iron overload (MRI T2* > 20 ms) groups.
Main Results:
- No significant systolic or diastolic dysfunction was observed via echocardiography.
- A significant difference in mean QTc interval was found between the cardiac iron overload (464.44 ± 20.35 ms) and non-cardiac iron overload (431.09 ± 32.29 ms) groups (p=0.001).
- The QTc interval demonstrated diagnostic utility with an AUC of 0.8 (p=0.002), sensitivity of 0.88, and specificity of 0.73 at a cut-off of 449 ms.
Conclusions:
- Cardiac iron overload is associated with QTc interval prolongation in adolescents.
- A QTc interval of 449 ms can be considered a potential cut-off for identifying cardiac iron overload in this population.
Background And Objectives:
Iron-induced cardiomyopathy remains the leading cause of mortality in β-thalassemia major patients. The T2* magnetic resonance imaging (MRI) technique is the gold standard for iron load detection, yet it is expensive and not widely available especially in the developing countries. Some previous studies showed that QTc interval could be used as an early detection of cardiac iron overload. This study aimed to evaluate the diagnostic value of QTc interval as a marker of early detection of cardiac iron overload in adolescent beta thalassemia major patients.
Methods:
We prospectively evaluated electrocardiography (ECG) parameter of QTc interval in 50 β-thalassemia major patients aged 10-18 years. All participants had a 12-lead ECG evaluation, echocardiogram and cardiac MRI T2* examination within three months (average 15 days). They were categorized as cardiac iron overload (MRI T2* < 20 millisecond) and non-cardiac iron overload (MRI T2* > 20 millisecond).
Results:
Of the 50 patients, the male to female ratio was 1.08:1 and the mean age was 13.7 ± 2.43 years. All participants showed normal systolic and diastolic function using conventional echocardiography. The mean QTc interval was significantly different between cardiac iron overload group (464.44 ± 20.35 ms) and noncardiac iron overload group (431.09 ± 32.29) (p= 0.001). Diagnostic study of QTc interval resulted in AUC 0.8 (p= 0.002). Calculated sensitivity and specificity of QTc interval were 0.88 and 0.73 respectively, with cut-off point of 449 ms.
Conclusion:
Cardiac iron overload is associated with QTc prolongation in adolescents. QTc interval of 449 ms could be considered as a cut-off point of cardiac iron overload.
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