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.

JBMR Plus
|November 6, 2024
PubMed

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.