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.
Abstract:
ADO2 is a heritable osteosclerotic disorder that usually results from heterozygous missense dominant negative mutations in the chloride channel 7 gene (CLCN7). ADO2 is characterized by a wide range of features and severity, including multiple fractures, impaired vision due to secondary bony overgrowth and/or the lack of the optical canal enlargement with growth, and osteonecrosis/osteomyelitis. The disease is presently incurable, although anecdotal evidence suggests that calcitriol and interferon gamma-1b (IFN-G) may have some beneficial effects. To identify the role of these drugs for the treatment of ADO2, we utilized a knock-in (G213R mutation in Clcn7) ADO2 mouse model that resembles the human disease. Six-week-old ADO2 heterozygous mice were administered vehicle (PBS) or calcitriol or IFN-G 5 times per week for 8 weeks. We determined bone phenotypes using DXA and μCT, and analyzed serum biochemistry and bone resorption markers. ADO2 mice treated with all doses of IFN-G significantly (p<0.05) attenuated the increase of whole body aBMD and distal femur BV/TV gain in both male and female compared to the vehicle group. In contrast, mice treated with low and medium doses of calcitriol showed a trend of higher aBMD and BV/TV whereas high dose calcitriol significantly (p<0.05) increased bone mass compared to the vehicle group. The calcium and phosphorus levels did not differ between vehicle and IFN-G or calcitriol treated mice; however, we detected significantly (p<0.05) elevated levels of CTX/TRAP5b ratio in IFN-G treated mice. Our findings indicate that while IFN-G at all doses substantially improved the osteopetrotic phenotypes in ADO2 heterozygous mice, calcitriol treatment at any dose did not improve the phenotype and at high dose further increased bone mass. Thus, use of high dose calcitriol therapy in ADO2 patients merits serious reconsideration. Importantly, our data support the prospect of a clinical trial of IFN-G in ADO2 patients.
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.
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