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Screening first-degree relatives of patients with idiopathic dilated cardiomyopathy
M Sefa Okten1, K Tuluce2, S Yakar Tuluce3
1Department of Cardiology, Ege University Faculty of Medicine, Izmir, Turkey.
Insights
First-degree relatives of idiopathic dilated cardiomyopathy (IDCM) patients show impaired left ventricular (LV) deformation. Strain echocardiography can detect this subclinical myocardial dysfunction early in relatives, aiding in timely intervention.
Area of Science:
- Cardiology
- Echocardiography
- Genetics
Background:
- Idiopathic dilated cardiomyopathy (IDCM) can have genetic links.
- Subclinical myocardial dysfunction may precede overt left ventricular (LV) failure in IDCM relatives.
Purpose of the Study:
- To evaluate for subclinical myocardial dysfunction in first-degree relatives of IDCM patients.
- To assess if strain echocardiography can detect early signs of cardiac impairment before LV failure is apparent.
Main Methods:
- Seventy-seven first-degree relatives of IDCM patients (aged 16-63) underwent 2D echocardiography with strain imaging.
- Left ventricular (LV) myocardial deformation parameters were evaluated in relatives with normal LVEF (≥55%).
- Findings were compared to an age- and sex-matched control group (n=86).
Main Results:
- First-degree relatives exhibited significantly reduced LV global longitudinal strain, radial strain, circumferential strain, and torsion compared to controls.
- Lower ejection fraction (LVEF) and fractional shortening (FS) were also observed in relatives.
- All assessed LV deformation parameters, including strain and strain rate, were significantly impaired in the relatives group.
Conclusions:
- First-degree relatives of IDCM patients demonstrate impaired left ventricular (LV) myocardial deformation.
- Strain echocardiography is a valuable tool for early detection of subclinical myocardial dysfunction in this high-risk population.
- Screening relatives may facilitate early intervention and management of potential cardiac conditions.
Background:
This study evaluated whether subclinical myocardial dysfunction occurs in first-degree relatives of patients with idiopathic dilated cardiomyopathy (IDCM), using strain echocardiographic imaging, before apparent left ventricular (LV) failure is observed.
Patients And Methods:
The study comprised 77 subjects aged 16-63 years who had first-degree relatives with a previous or new diagnosis of IDCM. LV myocardial deformation parameters of the first-degree relatives with normal LVEF (≥55%) values, as assessed using 2D echocardiography, were evaluated. The findings of the first-degree relatives were compared with an age- and sex-matched control group (n = 86).
Results:
No difference in terms of age, gender, and body surface area was detected between first-degree relatives and controls. First-degree relatives of IDCM patients had significantly lower LVEF (62.04 ± 5.8% vs. 65.65 ± 6.3%, p < 0.001) and FS values (39.4 ± 6.6 vs. 41.45 ± 5.5, p = 0.03) compared with the controls. Assessment of LV deformation parameters revealed that LV global longitudinal strain (-17.34 ± 2.19% vs. -19.21 ± 2.16%, p < 0.001) and strain rate (0.94 ± 0.14 s-1 vs. 1.03 ± 0.14 s-1, p < 0.001), radial strain (34.47 ± 9.14% vs 42.79 ± 11.91%, p < 0.001) and strain rate (1.6 ± 0.38 s-1 vs. 1.75 ± 0.29 s-1, p = 0.006), circumferential strain (-6.07 ± 2.83% vs. -18.29 ± 3.39%, p < 0.001) and strain rate (1.09 ± 0.24 s-1 vs. 1.2 ± 0.25 s-1, p = 0.004), and torsion (10.07 ± 5.18o/cm vs. 12.42 ± 5.78o/cm, p = 0.009) were significantly reduced in first-degree relatives compared with controls.
Conclusion:
LV deformation parameters are impaired in first-degree relatives of patients with IDCM. Screening of this population using standard 2D echocardiography and strain imaging may provide early detection of those with subclinical myocardial dysfunction.
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