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Pharmacokinetics of IGF-1 in PAPP-A2-Deficient Patients, Growth Response, and Effects on Glucose and Bone Density
Catalina Cabrera-Salcedo1,2, Tomoyuki Mizuno2,3, Leah Tyzinski1
1Division of Endocrinology, Cincinnati Children's Hospital Medical Center.
Insights
Recombinant human insulinlike growth factor 1 (rhIGF-1) therapy improved growth, insulin resistance, and bone density in a patient with PAPP-A2 deficiency. Pharmacokinetics were similar across patient groups.
Area of Science:
- Endocrinology
- Genetics
- Pediatrics
Background:
- Pregnancy-associated plasma protein A2 (PAPP-A2) deficiency causes growth failure due to low free insulinlike growth factor 1 (IGF-1).
- Understanding IGF-1 pharmacokinetics is crucial for effective treatment.
Purpose of the Study:
- To assess the 24-hour pharmacokinetic (PK) profile of free and total IGF-1 after recombinant human insulinlike growth factor 1 (rhIGF-1) administration.
- To evaluate growth, glucose metabolism, and bone mineral density (BMD) changes after 1 year of rhIGF-1 therapy in PAPP-A2 deficient patients.
Main Methods:
- Pharmacokinetic sampling over 24 hours post-rhIGF-1 dose in affected siblings, parents, and controls.
- Growth, oral glucose tolerance tests, and dual-energy X-ray absorptiometry scans were performed at baseline and after 1 year of rhIGF-1 treatment.
Main Results:
- rhIGF-1 administration normalized free and total IGF-1 levels with comparable PK profiles in all groups.
- The treated patient showed increased height velocity (3.0 to 6.2 cm/y), resolved insulin resistance, and improved total body BMD.
- Treatment was discontinued in one sibling due to pseudotumor cerebri.
Conclusions:
- Standard rhIGF-1 dosages exhibit similar PK profiles in PAPP-A2 deficiency, heterozygous relatives, and healthy controls.
- rhIGF-1 therapy offers a modest growth response and beneficial metabolic and bone effects in PAPP-A2 deficient patients.
- Potential adverse events like pseudotumor cerebri require careful monitoring.
Context:
The pregnancy-associated plasma protein A2 (PAPP-A2) cleaves insulinlike growth factor binding proteins 3 and 5, releasing free insulinlike growth factor 1 (IGF-1). Homozygous mutations in PAPP-A2 result in growth failure with elevated total but low free IGF-1.
Objective:
To determine the 24-hour pharmacokinetic (PK) profile of free and total IGF-1 after a dose of recombinant human insulinlike growth factor 1 (rhIGF-1). We describe the growth response and effects on glucose metabolism and bone mineral density (BMD) after 1 year of rhIGF-1 therapy.
Design And Patients:
Three affected siblings, their heterozygous parents, and two healthy controls participated. The subjects received a dose of rhIGF-1, followed by serial blood samples collected over 24 hours. The two younger siblings were started on rhIGF-1 treatment. An oral glucose tolerance test and dual-energy X-ray absorptiometry scans were obtained at baseline and after 1 year of treatment.
Results:
Subcutaneous administration of rhIGF-1 increased the concentration of free and total IGF-1 in patients with PAPP-A2 deficiency. The PK profile was comparable in all participants. At baseline, all three subjects demonstrated insulin resistance and below-average BMD. Treatment with rhIGF-1 is ongoing in the youngest patient but was discontinued in his brother because of the development of pseudotumor cerebri. The treated patient had an increase in height velocity from 3.0 to 6.2 cm/y, resolution of insulin resistance, and an increase in total body BMD.
Conclusions:
rhIGF-1 at standard dosages resulted in similar PK characteristics in patients with PAPP-A2 deficiency, heterozygous relatives, and healthy controls. The youngest affected patient experienced a modest growth response to therapy with rhIGF-1, as well as beneficial effects on glucose metabolism and bone mass.
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