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In nondiabetic C57BL/6J mice, canagliflozin affects the skeleton in a sex- and age-dependent manner
Carolyn Chlebek1, Casey McAndrews2, Samantha N Costa1,3
1Center for Molecular Medicine, MaineHealth Institute for Research, Scarborough, ME 04074, United States.
Abstract:
Canagliflozin (CANA) is a sodium glucose cotransporter-2 inhibitor that reduces blood glucose levels. Sodium glucose cotransporter-2 is primarily expressed in the kidney, but not in any bone cells, therefore effects on the skeleton are likely to be non-cell autonomous. Originally developed to treat type II diabetes, CANA use has expanded to treat cardiovascular and renovascular disease. Clinical trials examining CANA in diabetic patients have produced contradictory reports on fracture risk, but there are limited data of CANA in nondiabetic conditions. In nondiabetic preclinical models, short-term treatment with CANA negatively affected trabecular bone whereas long-term treatment reduced cortical bone mineralization in male but not female mice. To investigate the skeletal effects of an intermediate period of CANA treatment, we treated male and female C57BL/6 J mice with CANA (180 ppm) for 6 months. Age at treatment initiation was also evaluated, with cohorts starting CANA prior to skeletal maturity (3-months-old) or in adulthood (6-months-old). Longitudinal assessments of bone mineral density revealed early benefits of CANA treatment in female mice. At euthanasia, both trabecular and cortical bone morphology were improved by CANA treatment in males and females. Bone formation was reduced at the endosteal surface. CANA decreased osteoblast number in male mice and bone marrow adiposity in females. Overall, more skeletal benefits were recorded in CANA-treated females than males. Urinary calcium output increased with CANA treatment, but parathyroid hormone was not changed. Despite reduced fasting blood glucose, body composition and whole-body metabolism were minimally changed by CANA treatment. For all outcome measures, limited differences were recorded based on age at treatment initiation. This study demonstrated that in nondiabetic C57BL/6 J mice, an intermediate period of CANA treatment improved bone morphology, but reduced osteoblast and bone marrow adipocyte number as well as serum procollagen type 1 N-terminal pro-peptide in a sex-specific manner.
Insights
Canagliflozin (CANA) improved bone structure in mice, with greater benefits observed in females. This sodium glucose cotransporter-2 inhibitor showed sex-specific effects on bone cells and marrow, but minimal metabolic changes.
Area of Science:
- Pharmacology and Toxicology
- Bone Biology and Metabolism
- Endocrinology
Background:
- Canagliflozin (CANA), a sodium glucose cotransporter-2 inhibitor, is used for type II diabetes and cardiovascular/renovascular diseases.
- Skeletal effects of CANA are not fully understood, with conflicting fracture risk data in diabetic patients and limited studies in non-diabetic models.
- Previous preclinical studies showed short-term negative and long-term mixed effects on bone in non-diabetic mice.
Purpose of the Study:
- To investigate the skeletal effects of intermediate-term Canagliflozin treatment (6 months) in non-diabetic male and female mice.
- To evaluate the impact of age at treatment initiation (pre-pubertal vs. adult) on Canagliflozin's skeletal effects.
- To determine sex-specific differences in bone morphology, cellularity, and metabolism following Canagliflozin exposure.
Main Methods:
- Male and female C57BL/6J mice received Canagliflozin (180 ppm) for 6 months, starting at 3 or 6 months of age.
- Longitudinal bone mineral density assessments were performed.
- Trabecular and cortical bone morphology, bone formation, osteoblast number, bone marrow adiposity, and serum markers were analyzed at euthanasia.
Main Results:
- Canagliflozin treatment improved trabecular and cortical bone morphology in both sexes.
- Female mice showed early bone mineral density benefits.
- Sex-specific effects included reduced osteoblast number in males and decreased bone marrow adiposity in females. Urinary calcium increased, but parathyroid hormone remained unchanged.
Conclusions:
- Intermediate-term Canagliflozin treatment improved bone morphology in non-diabetic mice.
- Observed skeletal benefits were more pronounced in females, with distinct sex-specific impacts on bone cells and marrow.
- Age at treatment initiation had minimal influence on the skeletal outcomes.

