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Study 50 of 55HGH (Somatropin) literatureJournal of clinical research in pediatric endocrinology · ObservationalHigh-impact journal2023

Novel IGF1R Variants in Short Stature: Lessons from Two Patients and Outcome of Growth Hormone Therapy.

In two cases of short stature linked to IGF1R variants, rhGH therapy resulted in a modest height gain of +0.3 SDS per year, highlighting the need for careful dosing.

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Where it sits

this study against the rest of the hgh (somatropin) corpus
3
Preclinical
37
Observational · this one
0
Open-label
10
Randomised
5
Reviews

Summary and findings

This study examines the clinical and genetic characteristics of two patients with novel IGF1R variants and their response to recombinant human growth hormone (rhGH) therapy. Case 1, a 6.3-year-old boy, received rhGH at a dose of 0.035 mg/kg/day and achieved a height gain of +0.3 SDS per year over two years. Case 2, a 3-year-old boy, had no GH deficiency and was noted for his short stature but did not receive rhGH treatment details.

How much of this paper we could read: full text read (0.70). We had a clear abstract, so the summary below closely tracks the paper. What this means →
height gain of +0.3 SDS per year after 2 years of rhGH therapy.n=22023

Abstract

The authors’ words, as Journal of clinical research in pediatric endocrinology supplied them

The growth hormone (GH)-insulin-like growth factor 1 (IGF1) axis is essential for the regulation of growth. IGF1 exerts its effects through the IGF1 receptor type 1 (IGF1R) that plays a pivotal role in fetal and postnatal growth. Pathogenic monoallelic <i>IGF1R</i> variants are known to cause pre-and postnatal growth restriction, often accompanied by normal or elevated serum IGF1 levels. Herein, the clinical and genetic characteristics of two cases with <i>IGF1R</i> novel variants, describing their growth patterns, endocrinological findings, and response to recombinant human GH (rhGH) therapy are presented. Case 1 was a 6.3-year-old boy, with birth weight of 2,500 g [-2.5 standard deviation score (SDS)] and a height of 101.5 cm (-3.2 SDS). Laboratory investigations revealed IGF1 and IGFBP3 levels of 117.8 ng/mL (0.9 SDS) and 4.55 μg/mL (1.3 SDS), respectively. Clinical exome sequencing (CES) identified a novel heterozygous c.3722+1G>A/p.(?) variant in the <i>IGF1R</i> (NM_000875.5) inherited from the mother. At 6.9 years of age, rhGH treatment was initiated at a dose of 0.035 mg/kg/day. The patient has been receiving rhGH for two years, achieving a height gain of +0.3 SDS per year, with an uneventful follow-up. Case 2 was a 3-year-old male with short stature and a history of being born small for gestational age (SGA) (-2.6 SDS). His height and weight were 70.0 cm (-2.1 SDS) and 8.8 kg (-1.1 SDS), respectively. He had a history of frequent respiratory infections. Pituitary hormone levels were normal, and he had no evidence of GH deficiency. CES revealed a novel heterozygous variant c.2275_2278 dup/p.(Ala760Glyfs*21) in the <i>IGF1R</i>. Identifying genetic causes of idiopathic short stature in SGA babies is important, as it facilitates more precise diagnoses, reduces unnecessary testing, and potentially enables targeted therapies. Our experience with rhGH therapy in one patient suggests a modest growth response, consistent with previous studies. However, elevated IGF1 levels during treatment highlight the importance of balancing therapeutic doses to optimize height gains without causing side effects.

Background

This paper addresses the role of the GH-IGF1 axis in growth regulation, particularly in patients with short stature due to pathogenic IGF1R variants. Prior knowledge indicates that these variants can lead to growth restriction despite normal or elevated IGF1 levels. Understanding the genetic basis of idiopathic short stature can inform diagnosis and treatment approaches, making this study relevant for clinical practice.

Methods

The study presents two case reports detailing the clinical and genetic characteristics of the patients. Case 1 involved a 6.3-year-old boy treated with rhGH at a dose of 0.035 mg/kg/day for two years. Case 2 was a 3-year-old boy with short stature and no GH deficiency. Primary outcomes included growth patterns and endocrinological findings.

Results

Case 1 achieved a height gain of +0.3 SDS per year after two years of rhGH therapy. The IGF1 level was 117.8 ng/mL (0.9 SDS) before treatment. Case 2's height was 70.0 cm (-2.1 SDS) with no reported treatment outcomes.

Interpretation

The modest height gain observed in Case 1 aligns with previous studies on rhGH therapy, but the clinical significance of +0.3 SDS per year may be limited. The small sample size and lack of control groups restrict the ability to draw broader conclusions. The findings suggest a need for careful monitoring of IGF1 levels during treatment to avoid potential side effects.

Key findings

  • Case 1: height gain of +0.3 SDS per year after 2 years of rhGH therapy.
  • Case 1: IGF1 level of 117.8 ng/mL (0.9 SDS) prior to treatment.
  • Case 1: birth weight of 2,500 g (-2.5 SDS) and height of 101.5 cm (-3.2 SDS).
  • Case 2: height of 70.0 cm (-2.1 SDS) and weight of 8.8 kg (-1.1 SDS).
  • Case 2: history of being born small for gestational age (-2.6 SDS).

Limitations

  • only two case reports, limiting generalizability
  • no long-term follow-up data reported
  • no control groups included
  • lack of detailed treatment information for Case 2
  • observational nature limits causal inferences

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