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Published on: January 7, 2016
Growth and growth hormone treatment in short stature children born small for gestational age
José I Labarta1, Juan A Ruiz, Izilda Molina
1Endocrinology Unit. University Children's Hospital "Miguel Servet", Zaragoza, Spain. jilabarta@salud.aragon.es
Insights
Children born small for gestational age (SGA) often have persistent short stature. Growth hormone (GH) therapy can improve adult height in SGA children, but individual response varies, necessitating careful monitoring.
Area of Science:
- Pediatrics
- Endocrinology
- Growth Disorders
Background:
- Children born small for gestational age (SGA) frequently experience persistent short stature.
- SGA is associated with increased risks of insulin resistance and metabolic disease due to low lean mass and central adiposity.
- Pubertal development in SGA children may occur at a normal age but is relatively early for their height, with a potentially decreased growth spurt.
Purpose of the Study:
- To analyze adult height and pubertal growth in untreated SGA children.
- To evaluate the effectiveness and safety of growth hormone (GH) therapy in improving linear growth and adult height in SGA individuals.
- To identify predictors of growth response to GH therapy in SGA children.
Main Methods:
- Retrospective analysis of 64 untreated SGA children.
- Comparison of pubertal tempo and growth spurt between SGA children and controls.
- Review of existing literature on GH therapy effects on linear growth in SGA.
Main Results:
- Adult height in untreated SGA children was lower than target height and correlated with maternal height, target height, and height at puberty onset.
- The pubertal growth spurt was reduced in SGA children compared to controls, despite similar pubertal tempo.
- GH treatment significantly accelerates growth in the short term, with long-term response being less dose-dependent and largely achieving normal adult height standards.
- Initial growth response to GH in the first year is a key predictor of overall treatment success in SGA children.
Conclusions:
- SGA is a heterogeneous condition with varying growth patterns and responses to GH therapy.
- GH therapy is effective in improving adult height for the majority of short SGA children, bringing them within normal standards.
- Monitoring of IGF-I, IGFBP-3, and glucose metabolism is essential during GH therapy for SGA patients.
Abstract:
Persistent short stature is one of the most frequent complications of being born small for gestational age (SGA) as almost 15% of such children have a low adult height. Additionally, individuals born SGA may have low lean body mass and increased central adiposity which put them at risk of long-term morbidity related to insulin resistance and metabolic disease. Onset of puberty appears at a normal age but comes relatively early for their actual height. There are studies that show that the pubertal growth spurt is moderately decreased in SGA and some girls may experience advanced pubarche and menarche. We have retrospectively analyzed 64 untreated SGA children and we have observed that adult height was lower than target height and positively correlated with maternal height, target height and height at onset of puberty; the tempo of puberty was very similar between SGA and controls but pubertal growth spurt was lower in SGA than in controls. The pathophysiology of postnatal growth failure is complex and different anomalies in the GH-IGF axis had been described. The effect of GH therapy on linear growth and adult height has been extensively studied in the last 15 years. In the short term, GH treatment produces an acceleration of growth with a significant increment of height which is dose dependent during the first 3-4 years. The long-term response is less dose dependent and the vast majority of short SGA children reach an adult height within normal standards and adequate for their target height. There is an important variation in the growth response of SGA children to GH indicating that SGA represents a heterogeneous condition in which response during the first year is the most important predictor of subsequent growth response. GH appears to be safe at the current doses employed but monitoring of IGF-I, IGFBP-3 and glucose metabolism is mandatory during therapy.
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