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Published on: January 7, 2016
Growth hormone treatment in short children with intrauterine growth retardation
R Bundak1, F Darendeliler, H Günöz
1Department of Pediatrics, Istanbul Faculty of Medicine, Istanbul University, Turkey.
Insights
Recombinant human growth hormone (rhGH) significantly boosts growth velocity in short children with intrauterine growth retardation. This treatment shows potential for improving height prognosis in these patients.
Area of Science:
- Pediatric Endocrinology
- Growth Hormone Therapy
- Child Development
Background:
- Intrauterine growth retardation (IUGR) often results in short stature in children.
- Assessing growth hormone (GH) status is crucial for managing short stature.
- Recombinant human growth hormone (rhGH) is a therapeutic option for growth disorders.
Purpose of the Study:
- To evaluate the efficacy of rhGH in prepubertal children with IUGR and normal GH status.
- To assess the impact of rhGH on height, growth velocity, and IGF-I levels.
- To monitor for any adverse effects associated with rhGH treatment.
Main Methods:
- Prospective controlled study involving 26 short prepubertal children with IUGR.
- Randomization into rhGH treatment (0.2 IU/kg/day) and control groups for two years.
- Regular monitoring of height, height velocity, bone age, and Insulin-like Growth Factor I (IGF-I) levels.
Main Results:
- Treated group showed significant increase in height SDS (from -3.0 to -1.9) and height velocity SDS.
- Control group exhibited no significant changes in height or height velocity SDS over two years.
- IGF-I levels significantly increased in the rhGH-treated group, indicating therapeutic response.
Conclusions:
- rhGH treatment significantly enhances growth velocity in short children with IUGR and normal GH status.
- The observed improvements in growth indices suggest a potentially better height prognosis.
- rhGH therapy was well-tolerated with no adverse effects reported during the study period.
Abstract:
The aim of this prospective controlled study was to assess the effect of rhGH in short prepubertal children with intrauterine growth retardation and normal growth hormone status. Twenty-six children were randomized into treatment (12F, 4M) and control (6F, 4M) groups. Mean ages were 5.3 (1.3) yr and 4.3 (1.7) yr, respectively. rhGH (Genotropin) was used at a dose of 0.2 IU/kg/day as daily s.c. injections for two years. In the treated group, mean height SDS increased from -3.0 (0.5) to -1.9 (0.7) and height velocity SDS showed a significant increase from -1.3 (2.0) to 3.7 (1.8) in the first year (p < 0.001) and 1.6 (1.8) (p < 0.01) in the second year of treatment. In the controls, height SDS, initially -2.7 (1.4), and height velocity SDS, initially -0.9 (1.1), remained essentially the same during two years of follow-up. Height SDS for bone age changed by 0.6 in the treated group and 0.4 in the control group. Target height SDS--initial height SDS in the treated group improved by 1.1 SD but declined in the control group. IGF-I levels increased from 9.5 (4.2) nmol/l (72 [31.8] ng/ml) to 32.5 (27.0) nmol/l (244.4 [202.8] ng/ml) (p = 0.004) in the treated group while no change was observed in the controls. No adverse effects were encountered during rhGH therapy. It was concluded that rhGH treatment induces a significant increase in growth velocity in the short term. This outcome, as opposed to the unchanged indices in the control group over the same period, may be indicative of an improved height prognosis in short children born with intrauterine growth retardation treated with rhGH.
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