Interferon Gamma, but not Calcitriol Improves the Osteopetrotic Phenotypes in ADO2 Mice

Imranul Alam1, Amie K Gray1, Dena Acton1

  • 1Medicine, Indiana University School of Medicine, IN, USA.

Insights

Interferon gamma-1b (IFN-G) significantly improved osteosclerotic bone phenotypes in an Osteopoikilosis (ADO2) mouse model, while calcitriol did not show benefits and high doses worsened bone mass. These findings support clinical trials for IFN-G in ADO2 patients.

Area of Science:

  • Genetics and Molecular Biology
  • Bone Biology and Disease
  • Pharmacology and Therapeutics

Background:

  • Autosomal dominant osteosclerosis type 2 (ADO2) is a heritable disorder caused by dominant-negative mutations in the CLCN7 gene.
  • ADO2 presents with diverse clinical features including fractures, vision impairment, and osteonecrosis, with no current cure.
  • Anecdotal evidence suggests potential benefits of calcitriol and interferon gamma-1b (IFN-G) for ADO2.

Purpose of the Study:

  • To investigate the therapeutic efficacy of calcitriol and IFN-G in a mouse model of ADO2.
  • To evaluate the impact of these treatments on bone phenotypes, serum biochemistry, and bone resorption markers.

Main Methods:

  • A knock-in mouse model with a G213R mutation in Clcn7, mimicking human ADO2, was used.
  • Six-week-old heterozygous ADO2 mice received vehicle, calcitriol, or IFN-G (5 times/week for 8 weeks).
  • Bone phenotypes were assessed using DXA and μCT; serum biochemistry and bone resorption markers (CTX/TRAP5b) were analyzed.

Main Results:

  • IFN-G treatment at all doses significantly attenuated increases in whole body aBMD and distal femur BV/TV in ADO2 mice.
  • Calcitriol treatment showed a trend towards increased bone mass at low/medium doses, but high doses significantly increased bone mass.
  • IFN-G treatment led to significantly elevated CTX/TRAP5b ratios, indicating increased bone resorption, while calcium and phosphorus levels remained unchanged.

Conclusions:

  • IFN-G substantially improved osteopetrotic phenotypes in ADO2 mice, suggesting its therapeutic potential.
  • Calcitriol did not improve ADO2 phenotypes and high doses exacerbated bone mass, warranting caution in clinical use.
  • The findings strongly support the initiation of a clinical trial to evaluate IFN-G for treating ADO2 patients.