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Updated: Feb 8, 2026

Evaluation of Left Ventricular Structure and Function using 3D Echocardiography
Published on: October 28, 2020
Short-Term Evaluation of Left Ventricular Mass and Function in Children With Growth Hormone Deficiency After
E Gómez-Guzmán1,2, M D Cañete2, R Valle-Martos3
1Cardiology Unit, Hospital Reina Sofía de Córdoba, Cordova, Spain.
Insights
Growth hormone deficiency (GHD) in children is linked to lower left ventricular mass (LVM). Short-term GH therapy improves metabolic health and increases LVM to normal levels.
Area of Science:
- Pediatric Endocrinology
- Cardiovascular Physiology
- Metabolic Disorders
Background:
- Growth hormone deficiency (GHD) impacts nutritional, metabolic, and cardiac parameters in children.
- Assessing the effects of GHD and subsequent growth hormone (GH) replacement therapy is crucial for understanding pediatric health.
- Prepubertal children with GHD present unique physiological considerations.
Purpose of the Study:
- To evaluate the impact of GHD on nutritional status, metabolic profiles, brain natriuretic peptide (BNP) levels, and left ventricular mass (LVM) in prepubertal children.
- To determine the short-term effects of GH replacement therapy on these parameters.
- To investigate correlations between cardiac parameters and growth factors like IGF1 and IGFBP3.
Main Methods:
- Prospective study of 81 prepubertal children (40 GHD, 41 controls) at Tanner Stage I.
- Baseline and 6-month follow-up measurements including anthropometrics, blood tests (glucose, insulin, lipids, IGF1, IGFBP3), and echocardiography (LVM, LV function, BNP).
- Statistical analysis using Student's t-test/U-Mann-Whitney-test and Pearson's correlation (p < 0.05 significant).
Main Results:
- GHD children had smaller indexed LVM compared to controls; metabolic and functional parameters were similar.
- GH therapy improved nutritional and metabolic profiles, with no significant changes in diastolic/systolic functions.
- Indexed LVM increased significantly post-therapy, becoming comparable to controls; correlations found between LVM-IGF1 and sD-IGFBP3.
Conclusions:
- Childhood GHD is associated with reduced indexed LVM.
- Short-term GH therapy effectively increases indexed LVM towards normal ranges.
- GH treatment maintains normal cardiac function and BNP levels while improving lipid profiles in GHD children.
Abstract:
Background: Our study was designed to assess the effects of GHD on nutritional and metabolic parameters, brain natriuretic peptide (BNP) levels, and left ventricular mass (LVM) in prepubertal children and after short-term GH replacement therapy. Materials and Methods: This prospective study enrolled 81 children. We compared 40 GHD children (16 males and 24 females) to 41 healthy children (control group) (18 males and 23 females). All subjects were at Tanner Stage I (aged 7-11 years). At the baseline, a blood sample was drawn and echocardiographic images were obtained. These tests were repeated on the GHD subjects after 6 months of GH replacement therapy. Body surface, weight, size, blood pressure, heart rate, glucose, insulin, HOMA-IR, HOMA-β, QUICKI, cholesterol, HDLc, LDLc, triglycerides, IGF1, and IGFBP3 were measured. Indexed LVM, diastolic and systolic diameter (dD-sD), diastolic and systolic LV function, isovolumic relaxation time, right ventricle function, and BNP levels were obtained through echocardiography. These parameters were correlated to growth factors. Data were analyzed using Student's t-test or U-Mann-Whitney-test and Pearson's correlation, considering p < 0.05 to be significant. Results: Indexed LVM was smaller in GHD patients than in controls, whereas diastolic and systolic functions, BNP, metabolic, and nutritional profiles were similar. After treatment, nutritional and metabolic profiles significantly improved, though diastolic and systolic functions did not seem to have changed. There was a significant increase in LVM. Indexed LVM was similar to that of controls. Significant correlations were obtained between LVM-IGF1 and sD-IGFBP3. Conclusions: GHD in childhood is associated with a lower indexed LVM. In the short-term, GH increases the indexed LVM, while maintaining normal systolic and diastolic functions, BNP, and an improved lipid profile.
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