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.
Abstract

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