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Prevalence and Risk Factors for Cardiac and Liver Iron Overload in Adults with Thalassemia in Malaysia
Chin F Ngim1, Mei Y Lee1, Norliza Othman2
1a Jeffrey Cheah School of Medicine and Health Sciences , Monash University Malaysia , Johor Bahru , Malaysia.
Insights
Iron overload is common in thalassemia patients, affecting organs like the heart and liver. T2* MRI is crucial for detecting cardiac iron overload, as serum ferritin levels do not reliably predict it.
Area of Science:
- Hematology
- Cardiology
- Radiology
Background:
- Thalassemia patients often experience iron overload due to frequent blood transfusions.
- Cardiac and liver iron overload (IOL) are significant complications, leading to organ damage.
Purpose of the Study:
- To investigate the prevalence and risk factors of cardiac and liver IOL in thalassemia patients.
- To assess the correlation between serum ferritin levels and organ T2* values.
Main Methods:
- Prospective study of 69 thalassemia patients (TDT and NTDT) using T2* magnetic resonance imaging (MRI).
- Analysis of cardiac and liver T2* values, serum ferritin levels, and demographic data.
- Regression analysis to identify risk factors for IOL.
Main Results:
- High prevalence of liver IOL (96.2% TDT, 100% NTDT) and cardiac IOL (30.2% TDT, 12.5% NTDT) was observed.
- Severe cardiac IOL (T2* <10 ms) affected 11.3% of TDT patients.
- Serum ferritin strongly correlated with liver T2* but not cardiac T2*.
- Male gender and Malay ethnicity were associated with more severe cardiac and liver IOL, respectively.
Conclusions:
- Routine T2* MRI screening is essential for early detection of cardiac IOL in thalassemia patients.
- Serum ferritin is an unreliable marker for cardiac IOL, necessitating advanced imaging techniques.
Abstract:
We explored the severity and risk factors for cardiac and liver iron overload (IOL) in 69 thalassemia patients who underwent T2* magnetic resonance imaging (T2* MRI) in a Malaysian tertiary hospital from 2011 to 2015. Fifty-three patients (76.8%) had transfusion-dependent thalassemia (TDT) and 16 (23.2%) had non transfusion-dependent thalassemia (NTDT). Median serum ferritin prior to T2* MRI was 3848.0 μg/L (TDT) and 3971.0 μg/L (NTDT). Cardiac IOL was present in 16 (30.2%) TDT patients and two (12.5%) NTDT patients, in whom severe cardiac IOL defined as T2* <10 ms affected six (11.3%) TDT patients. Liver IOL was present in 51 (96.2%) TDT and 16 (100%) NTDT patients, 37 (69.8%) TDT and 13 (81.3%) NTDT patients were in the most severe category (>15 mgFe/gm dry weight). Serum ferritin showed a significantly strong negative correlation with liver T2* in both TDT (rs = -0.507, p = 0.001) and NTDT (r = -0.762, p = 0.002) but no correlation to cardiac T2* in TDT (r = -0.252, p = 0.099) as well as NTDT (r = -0.457, p = 0.100). For the TDT group, regression analysis showed that cardiac IOL was more severe in males (p = 0.022) and liver IOL was more severe in the Malay ethnic group (p = 0.028) and those with higher serum ferritin levels (p = 0.030). The high prevalence of IOL in our study and the poor correlation between serum ferritin and cardiac T2* underline the need to routinely screen thalassemia patients using T2* MRI to enable the early detection of cardiac IOL.
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