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Characterization of Metabolic Status in Nonhuman Primates with the Intravenous Glucose Tolerance Test
Published on: November 13, 2016
[Clinical and biochemical evaluation of the administration of growth hormone]
F Mendoza-Morfin1, H Cárdenas-Tirado
1Departamento de Endocrinología Pediátrica, Hospital General, Centro Médico La Raza, Instituto Mexicano del Seguro Social, México, D.F.
Insights
Recombinant human growth hormone (Somatrem) treatment significantly increased height velocity in children with growth hormone deficiency. Most children experienced substantial height gains and advanced bone age, with injection site pain as the only side effect.
Area of Science:
- Pediatric Endocrinology
- Biotechnology
- Growth Disorders
Context:
- Isolated growth hormone deficiency (GHD) affects children's linear growth.
- Recombinant human growth hormone (Somatrem) offers a therapeutic option for GHD.
- Assessing treatment efficacy requires monitoring growth parameters and biochemical markers.
Purpose:
- To evaluate the efficacy and safety of Somatrem in treating GHD in children.
- To assess the impact of Somatrem on height velocity, bone age, and Insulin-like Growth Factor 1 (IGF-1) levels.
- To identify any adverse effects associated with Somatrem treatment.
Summary:
- Ten children with GHD received Somatrem (0.5 IU/kg/week) via intramuscular injections for 12 months.
- Mean height velocity increased from 0.27 cm/month to 0.62 cm/month; eight children showed significant height increase (8.4 cm).
- Bone age advanced in all children, and IGF-1 levels increased in nine; injection site pain was the sole reported side effect.
Impact:
- Somatrem treatment effectively improves linear growth in children with GHD.
- The treatment demonstrates a favorable safety profile with manageable side effects.
- Monitoring IGF-1 and bone age progression is crucial for assessing treatment response.
Abstract:
Ten children with isolated growth hormone deficiency were treated for 1 year with 0.5 UI/kg week with Somatrem (recombinant human growth hormone), given as intramuscular injections three times weekly. Before treatment the children had a chronological age of 7-12.4 years (mean 10.4 years), with a bone age at least 25% below the chronological age. There was no radiological evidence of an intra or suprasellar mass in any child, and no response to provocative growth hormone tests (with exercise or arginine-insulin injection). Informed written consent for treatment was obtained from the parents of each child. Clinical signs were registered every month; triiodothyronine, thyroxine, thyrotropine, glucose, urea, creatinine, blood cells count, and hemoglobine, glycosylated hemoglobine, glutamic-piruvic and glutamic-oxalacetic transaminases, alkaline phosphatase, anti-human growth hormone and, E. coli antibodies, insulin like growth factor 1, and bone age were assessed every 3 months. The mean height velocity was 0.27 +/- 0.1 cm/month before treatment, and increased throughout treatment to a value of 0.62 +/- 0.16 cm/month after 12 months. Within the first year eight of the 10 children had a height increase of 8.4 +/- 0.98 cm. The other two children showed no significant difference; one of them with a very low socioeconomic status, and the other developed typhoid fever. All of the children showed an advance in bone age, but none reached a bone age appropriate for their chronological age; without modifications in the laboratory parameters. Insulin like growth factor 1 increased in 9 children. Pain at the injection site was the only side effect reported.
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