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Updated: Feb 11, 2026

The Generation of Closed Femoral Fractures in Mice: A Model to Study Bone Healing
Published on: August 16, 2018
Healing of fractures in osteoporotic bones in mice treated with bisphosphonates - A transcriptome analysis
Michel Hauser1, Mark Siegrist2, Irene Keller2
1Department for BioMedical Research (DBMR), University of Bern, Bern, Switzerland; Graduate School of Cellular and Biomedical Sciences, University of Bern, Bern, Switzerland.
Abstract:
Bisphosphonates (BP) are inhibitors of bone resorption and are used to treat postmenopausal osteoporosis. Long-term treatment with BP attenuates bone remodeling, possibly leading to detrimental consequences for the bones' ability to repair defects. To test this hypothesis, an animal model was established. Twelve week old mice were ovariectomized (OVX). Following confirmation of bone loss 8 weeks after OVX, the animals were treated with Alendronate (ALN) until sacrifice. After 5 weeks of ALN injections, the femoral bones were osteotomized and the osteotomies were either rigidly or non-rigidly stabilized. In rigidly fixed defects, no callus developed between 1 and 5 weeks after osteotomy, whereas after non-rigid fixation, callus development occurred. The administration of ALN resulted in an increase in newly formed bone at the defect site 5 weeks after osteotomy, irrespective of the estrogen status or fixation system. Transcriptome analysis demonstrated that both rigid and non-rigid fixation affected gene expression primarily during the middle phase of bone repair. Furthermore, the number of differentially expressed genes in tissues from non-rigidly fixed defect sites increased in animals treated with ALN over the course of bone repair. This indicates that ALN-dependent repair processes become increasingly dominant in the late phases of the healing process. Ranking of the factors affecting the composition of the transcriptome and their impact on the healing process revealed fixation at the defect site to be the strongest causative factor, followed by bisphosphonate treatment and estrogen deficiency. The present study suggests that the continuous administration of ALN is detrimental to bone repair, eventually causing a delay in healing in mechanically compromised situations. Consequently, rigid fixation may prove essential for a successful intervention.
Insights
Long-term bisphosphonate (BP) treatment impairs bone healing, especially in mechanically unstable fractures. Rigid fixation is crucial for successful bone repair in these situations.
Area of Science:
- Orthopedics
- Pharmacology
- Bone Biology
Background:
- Bisphosphonates (BP) inhibit bone resorption and are used for osteoporosis.
- Long-term BP use may negatively impact bone repair by altering remodeling.
- An animal model was used to investigate BP effects on fracture healing.
Purpose of the Study:
- To determine if long-term bisphosphonate treatment impairs fracture healing.
- To assess the influence of fixation stability and estrogen deficiency on BP-affected bone repair.
- To analyze gene expression changes during BP-influenced fracture healing.
Main Methods:
- Ovariectomized (OVX) mice received Alendronate (ALN) treatment.
- Femoral osteotomies were created and either rigidly or non-rigidly stabilized.
- Bone healing and gene expression were analyzed 5 weeks post-osteotomy.
Main Results:
- ALN treatment increased new bone formation but delayed healing in non-rigidly fixed defects.
- Gene expression analysis revealed fixation stability as the primary factor influencing healing.
- ALN treatment and estrogen deficiency also impacted gene expression, particularly in later healing stages.
Conclusions:
- Continuous Alendronate administration is detrimental to bone repair, causing delays in healing.
- Rigid fixation is essential for successful fracture healing in the context of bisphosphonate treatment.
- Fixation stability is a more significant factor than BP treatment or estrogen deficiency in bone repair.
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