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Association of Epicardial Fat with Diastolic and Vascular Functions in Children with Type 1 Diabetes
Faisal-Alkhateeb Ahmad1, Kotb Abbass Metwalley2, Ismail Lotfy Mohamad2
1Faculty of Medicine, Assiut University, Assiut, 71111, Egypt. faisalalkhateeb@aun.edu.eg.
Insights
Epicardial fat thickness (EFT) is elevated in children with type 1 diabetes mellitus (T1DM), indicating subclinical cardiac and vascular dysfunction. Increased EFT is linked to poorer cardiovascular outcomes in pediatric T1DM patients.
Area of Science:
- Cardiology
- Pediatrics
- Endocrinology
Background:
- Type 1 diabetes mellitus (T1DM) in children can lead to early cardiovascular complications.
- Epicardial fat thickness (EFT) is an emerging marker of cardiovascular risk.
- Subclinical cardiac and vascular dysfunction may be present in pediatric T1DM patients.
Purpose of the Study:
- To investigate the association between epicardial fat thickness (EFT) and cardiovascular functional parameters in children with T1DM.
- To assess cardiac dimensions, left ventricular function, and endothelial function in T1DM children.
- To determine if EFT is an independent predictor of cardiovascular dysfunction in this population.
Main Methods:
- Echocardiography was used to measure EFT, cardiac dimensions, and left ventricular diastolic function (E/E', E' velocity).
- Ultrasonography assessed brachial artery flow-mediated dilation (FMD) and carotid intima-media thickness (CIMT).
- Multivariate linear regression analyzed relationships between EFT and cardiovascular parameters in 50 T1DM children and 50 controls.
Main Results:
- Children with T1DM exhibited significantly increased EFT, impaired diastolic function (reduced E'/A', increased E/E'), reduced FMD, and increased CIMT compared to controls.
- EFT was negatively correlated with lateral mitral E' velocity and FMD, and positively correlated with mitral E/E' ratio and CIMT.
- Multivariate analysis confirmed EFT as an independent predictor of diastolic dysfunction (E/E', E' mean) and endothelial dysfunction (FMD, CIMT).
Conclusions:
- Children with T1DM demonstrate subclinical left ventricular diastolic dysfunction and vascular endothelial dysfunction.
- Increased epicardial fat thickness is a significant finding associated with these subclinical dysfunctions in pediatric T1DM.
- EFT measurement, with a cutoff of 6.95 mm, can help predict endothelial dysfunction in children with T1DM.
Abstract:
We aimed to examine the relationship between epicardial fat thickness (EFT) measured by echocardiography and cardiovascular functional parameters in children with type 1 diabetes mellitus (T1DM). The study included 50 type 1 diabetic children and 50 healthy subjects matched by sex, age, and body mass index. In addition to laboratory tests, all participants underwent transthoracic echocardiography for EFT, cardiac dimensions and left ventricular functions, and ultrasonographic examination for brachial artery flow-mediated dilation (FMD) response and carotid intima-media thickness (CIMT). Multivariate linear regression was used to analyze the relationship between EFT and CIMT, FMD, lateral mitral E' velocity, and mitral E/E' ratio. EFT was significantly increased in diabetic children compared with controls (P < 0.001). In comparison with controls diabetic children had significantly increased mitral A, decreased lateral mitral E', decreased mitral E/A ratio, decreased lateral mitral E'/A' ratio, and increased mitral E/E' ratio (P < 0.001). FMD response was significantly lower in diabetic group versus controls (P < 0.001) and CIMT was significantly increased in diabetics versus controls (P = 0.03). EFT was negatively correlated with lateral mitral E' velocity (r = - 0.613, P < 0.001), positively correlated with mitral E/E' ratio (r = 0.60, P < 0.001), positively correlated with CIMT (r = 0.881, P < 0.001), and negatively correlated with FMD (r = - 0.533, P < 0.001). By multivariate regression analysis, the EFT was independently and positively associated with CIMT mean and E/E' mean and negatively associated with FMD mean and E' mean. The cut-off point for EFT as predictor of endothelial dysfunction was 6.95 mm. Our findings suggest that children with T1DM have subclinical LV diastolic and vascular endothelial dysfunctions associated with increased EFT.
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