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Published on: January 16, 2019
Prolonged QTc Interval in Nigerian Children with Sickle Cell Anemia
Maxwell U Anah1, Anthony C Nlemadim1, Chigozie I Uzomba1
1Department of Paediatrics, University of Calabar Teaching Hospital, Calabar, Nigeria.
Insights
Children with sickle cell anemia have a higher risk of prolonged QTc interval during vaso-occlusive crises (VOCs). This cardiac risk is significantly elevated during VOCs compared to steady-state, especially in males.
Area of Science:
- Cardiology
- Pediatrics
- Hematology
Background:
- Prolonged QTc interval is a known risk factor for ventricular arrhythmia.
- Sickle cell anemia is associated with an increased risk of prolonged QTc interval.
Purpose of the Study:
- To determine the risk of prolonged QTc interval in children with sickle cell anemia.
- To investigate the relationship between prolonged QTc interval and vaso-occlusive crises (VOCs) versus steady-state.
- To assess the influence of gender and packed cell volume (PCV) on QTc interval during VOCs.
Main Methods:
- Prospective cohort study of 38 children (aged 5-17 years) with sickle cell anemia.
- 12-lead electrocardiography to assess QTc interval during VOCs and steady-state.
- Statistical analysis including relative risk, sensitivity, specificity, and logistic regression.
Main Results:
- The median QTc interval was significantly higher during VOCs (0.447s) than during steady-state (0.435s).
- The risk of prolonged QTc interval (>0.440s) was 3.25 times higher during VOCs (68.4%) compared to steady-state (21.1%).
- Prolonged QTc interval occurred with 68.4% sensitivity and 78.9% specificity at a cutoff of 0.441s during VOCs. Males showed a higher likelihood of prolonged QTc during VOCs.
Conclusions:
- Children with sickle cell anemia are at a substantially increased risk of prolonged QTc interval during VOCs.
- Routine electrocardiography is recommended to identify children with prolonged QTc intervals for timely cardiac management.
- Male gender may be associated with a higher risk of prolonged QTc interval during VOCs in sickle cell anemia patients.
Abstract:
Prolonged QTc interval, a risk factor for ventricular arrhythmia, occurs in sickle cell anemia. The aim of this study was to determine the risk of prolonged QTc interval and its relationship with vaso-occlusive painful crises (VOCs) and follow-up steady-state in the same children with sickle cell anemia. This prospective cohort study enrolled 38 subjects, aged 5-17 years. History of bone pain and examination were obtained during VOC and steady-state. Assessment of QTc interval was with 12-lead electrocardiography. The QTc interval value >0.440 seconds was taken as prolonged. Median (interquartile range) of QTc interval was higher during VOC [0.447 (0.438-0.459) seconds] than during steady-state [0.435 (0.417-0.440) seconds]. Risk of prolonged QTc interval was higher during VOC (68.4%) than in steady-state (21.1%) with relative risk of 3.250 [95% confidence interval (CI) = 1.692-6.241]. Prolonged QTc interval was likely to occur [area under curve (AUC) = 0.759, p<0.001] during VOC with 68.4% sensitivity, 78.9% specificity and at cutoff point of 0.441 seconds. Prolonged QTc interval negatively correlated with packed cell volume (PCV) during VOC [r (36) = -0.14, p = 0.387]. Binary logistics of the combined effect of PCV and gender on QTc interval showed that during VOC, males were more likely to have prolonged QTc [odds ratio (OR): 1.337 (95% CI: 0.327-5.464; p = 0.686]. Children with sickle cell anemia, particularly males, were three-times more likely to have prolonged QTc interval during VOC when QTc interval was >0.441 seconds. Routine electrocardiography may help to identify those with QTc intervals above this threshold for prompt cardiac-oriented management.
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