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Early identification of cardiovascular involvement in patients with β-thalassemia major
Maurizio Cusmà Piccione1, Basilia Piraino, Concetta Zito
1Clinical and Experimental Department of Medicine, University of Messina, Messina, Italy.
Insights
Early cardiovascular changes occur in patients with beta-thalassemia major (β-TM), even without significant iron overload. Two-dimensional strain and echo-tracking effectively detect these subclinical abnormalities, surpassing standard echocardiography.
Area of Science:
- Cardiology
- Hematology
- Medical Imaging
Background:
- Beta-thalassemia major (β-TM) is a genetic blood disorder requiring lifelong transfusions.
- Cardiovascular complications, including myocardial iron overload, are a major concern in β-TM patients.
- Early detection of subclinical cardiovascular abnormalities is crucial for timely intervention.
Purpose of the Study:
- To assess subclinical left ventricular myocardial deformation and carotid arterial stiffness in asymptomatic β-TM patients.
- To determine if 2-dimensional strain and echo-tracking can identify early cardiovascular changes in β-TM.
- To evaluate these parameters in the absence of significant myocardial iron overload.
Main Methods:
- 32 β-TM patients and 33 healthy controls underwent 2-dimensional strain analysis (XStrain) and carotid ultrasonography.
- Cardiac magnetic resonance imaging (T2* algorithm) assessed myocardial iron overload in patients.
- Echocardiography and vascular stiffness parameters were measured and compared between groups.
Main Results:
- Global left ventricular longitudinal strain was significantly impaired in β-TM patients (-17.9% vs -24.3%, p=0.002).
- Arterial stiffness was significantly increased in β-TM patients (stiffness index 6.16 vs 4.65, p<0.001).
- Standard echocardiographic and carotid intima-media thickness were comparable between groups.
Conclusions:
- Cardiovascular abnormalities, including impaired myocardial strain and increased arterial stiffness, are present early in β-TM, even without significant iron overload.
- Two-dimensional strain and echo-tracking are more sensitive than standard echocardiography and vascular parameters for early detection of cardiovascular involvement in β-TM.
- These advanced imaging techniques may aid in identifying at-risk patients and guiding therapeutic strategies.
Abstract:
The aim of the present study was to evaluate left ventricular myocardial deformation and carotid arterial stiffness using 2-dimensional strain and echo-tracking in patients with asymptomatic β-thalassemia major (β-TM) without significant myocardial iron overload to determine whether early subclinical cardiovascular abnormalities would be detectable. We enrolled 32 patients with β-TM (23 women, mean age 35 ± 8 years) and 33 healthy volunteers (20 women, mean age 35 ± 6 years). All subjects underwent echocardiography with 2-dimensional strain analysis (XStrain) and ultrasonography of the carotid arteries with measurement of the stiffness parameters (ProSound Alpha 10). Cardiac magnetic resonance imaging using a T2* algorithm (37.7 ± 5.6 ms) for the assessment of myocardial iron overload was performed in each patient. The clinical and standard echocardiographic parameters were comparable between the patients and healthy subjects. The global left ventricular longitudinal strain was significantly impaired in the patients compared with the controls (-17.9 ± 3.5% vs -24.3 ± 3.4%, p = 0.002), although the radial and circumferential strain values were similar between the 2 groups (p = NS for both). The carotid intima-media thickness was comparable between the patients and healthy subjects (0.67 ± 0.20 mm vs 0.66 ± 0.15 mm, p = NS). In contrast, the arterial stiffness was significantly increased in the patients compared with the controls (stiffness index 6.16 ± 1.31 vs 4.65 ± 0.82, p <0.001; arterial compliance 1.10 ± 0.26 vs 1.28 ± 0.30 cm(2)/mm Hg, p = 0.027; elastic modulus 74.1 ± 19.5 vs 59.1 ± 12.1 mm Hg, p = 0.001). In conclusion, cardiovascular abnormalities, although often subclinical, occur at an early stage of β-TM and also in the absence of significant iron overload. Thus, 2-dimensional strain and echo-tracking might be more accurate than standard echocardiography and vascular parameters in the early identification of cardiovascular involvement.
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