Related Experiment Video
Updated: May 20, 2026

Fracture Apparatus Design and Protocol Optimization for Closed-stabilized Fractures in Rodents
Published on: August 14, 2018
Selective and non-selective cyclooxygenase inhibitors delay stress fracture healing in the rat ulna
Lisa J Kidd1, Nick R Cowling, Andy C Wu
1School of Veterinary Science, The University of Queensland, Gatton, QLD 4343, Australia.
Abstract:
Anti-inflammatory drugs are widely used to manage pain associated with stress fractures (SFxs), but little is known about their effects on healing of those injuries. We hypothesized that selective and non-selective anti-inflammatory treatments would retard the healing of SFx in the rat ulna. SFxs were created by cyclic loading of the ulna in Wistar rats. Ulnae were harvested 2, 4 or 6 weeks following loading. Rats were treated with non-selective NSAID, ibuprofen (30 mg/kg/day); selective COX-2 inhibition, [5,5-dimethyl-3-3 (3 fluorophenyl)-4-(4 methylsulfonal) phenyl-2 (5H)-furanone] (DFU) (2.0 mg/kg/day); or the novel c5a anatagonist PMX53 (10 mg/kg/day, 4 and 6 weeks only); with appropriate vehicle as control. Quantitative histomorphometric measurements of SFx healing were undertaken. Treatment with the selective COX-2 inhibitor, DFU, reduced the area of resorption along the fracture line at 2 weeks, without affecting bone formation at later stages. Treatment with the non-selective, NSAID, ibuprofen decreased both bone resorption and bone formation so that there was significantly reduced length and area of remodeling and lamellar bone formation within the remodeling unit at 6 weeks after fracture. The C5a receptor antagonist PMX53 had no effect on SFx healing at 4 or 6 weeks after loading, suggesting that PMX53 would not delay SFx healing. Both selective COX-2 inhibitors and non-selective NSAIDs have the potential to compromise SFx healing, and should be used with caution when SFx is diagnosed or suspected.
Insights
Non-selective NSAIDs and selective COX-2 inhibitors may impede stress fracture healing. Caution is advised when using these anti-inflammatory drugs for stress fractures, as they can negatively impact bone repair processes.
Area of Science:
- Orthopedics
- Pharmacology
- Biomedical Engineering
Background:
- Stress fractures (SFxs) are common injuries, particularly in athletes.
- Anti-inflammatory drugs are frequently used for pain management but their impact on SFx healing is poorly understood.
Purpose of the Study:
- To investigate the effects of selective and non-selective anti-inflammatory treatments on stress fracture healing in a rat model.
- To evaluate the potential of a C5a receptor antagonist in modulating SFx healing.
Main Methods:
- SFxs were induced in Wistar rat ulnae via cyclic loading.
- Rats received treatments including non-selective NSAID (ibuprofen), selective COX-2 inhibitor (DFU), and C5a receptor antagonist (PMX53).
- Quantitative histomorphometric analysis was performed at 2, 4, and 6 weeks post-fracture.
Main Results:
- Selective COX-2 inhibition (DFU) reduced bone resorption at 2 weeks but did not affect later bone formation.
- Non-selective NSAID (ibuprofen) decreased both bone resorption and formation, leading to impaired remodeling and reduced lamellar bone formation at 6 weeks.
- C5a receptor antagonist (PMX53) showed no significant effect on SFx healing at 4 or 6 weeks.
Conclusions:
- Both selective COX-2 inhibitors and non-selective NSAIDs have the potential to compromise stress fracture healing.
- These anti-inflammatory drugs should be used cautiously in patients diagnosed with or suspected of having stress fractures.
- The C5a receptor antagonist PMX53 did not impede SFx healing in this model.

