Related Experiment Video
Updated: Aug 8, 2026

Standardized Histomorphometric Evaluation of Osteoarthritis in a Surgical Mouse Model
Published on: May 6, 2020
Alteration of femoral bone morphology and density in COX-2-/- mice
Galen Robertson1, Chao Xie, Di Chen
1Parker H. Petit Institute for Bioengineering and Bioscience, Georgia Institute of Technology, Atlanta, GA 30332, USA.
Abstract:
A role of COX-2 in pathological bone destruction and fracture repair has been established; however, few studies have been conducted to examine the involvement of COX-2 in maintaining bone mineral density and bone micro-architecture. In this study, we examined bone morphology in multiple trabecular and cortical regions within the distal and diaphyseal femur of 4-month-old wild-type and COX-2-/- mice using micro-computed tomography. Our results demonstrated that while COX-2-/- female mice had normal bone geometry and trabecular microarchitecture at 4 months of age, the male knockout mice displayed reduced bone volume fraction within the distal femoral metaphysis. Furthermore, male COX-2-/- mice had a significant reduction in cortical bone mineral density within the central cortical diaphysis and distal epiphysis and metaphysis. Consistent with the observed reduction in cortical mineral density, biomechanical testing via 4-point-bending showed that male COX-2-/- mice had a significant increase in postyield deformation, indicating a ductile bone phenotype in male COX-2-/- mice. In conclusion, our study suggests that genetic ablation of COX-2 may have a sex-related effect on cortical bone homeostasis and COX-2 plays a role in maintaining normal bone micro-architecture and density in mice.
Insights
Genetic deletion of cyclooxygenase-2 (COX-2) affects male mice bone density and micro-architecture, leading to a more ductile bone phenotype. Female mice showed no significant changes, indicating a sex-related effect.
Area of Science:
- Biomedical Science
- Orthopedics
- Bone Biology
Background:
- Cyclooxygenase-2 (COX-2) is known for its role in bone destruction and fracture repair.
- Limited research exists on COX-2's involvement in maintaining bone mineral density and micro-architecture.
Purpose of the Study:
- To investigate the role of COX-2 in maintaining bone mineral density and micro-architecture.
- To examine sex-related differences in the effects of COX-2 deficiency on bone health.
Main Methods:
- Micro-computed tomography was used to analyze trabecular and cortical bone morphology in wild-type and COX-2 knockout mice.
- Biomechanical testing (4-point-bending) assessed bone material properties.
Main Results:
- Male COX-2 knockout mice exhibited reduced bone volume fraction in the distal femoral metaphysis.
- Male knockout mice showed decreased cortical bone mineral density and increased postyield deformation, indicating a ductile bone phenotype.
- Female COX-2 knockout mice displayed normal bone geometry and micro-architecture.
Conclusions:
- Genetic ablation of COX-2 has sex-related effects on cortical bone homeostasis.
- COX-2 plays a crucial role in maintaining normal bone micro-architecture and density in male mice.

