Related Experiment Video
Updated: Apr 18, 2026

Skeletal Phenotype Analysis of a Conditional Stat3 Deletion Mouse Model
Published on: July 3, 2020
Adverse Effects of Osteocytic Constitutive Activation of ß-Catenin on Bone Strength and Bone Growth
Sixu Chen1,2, Jianquan Feng3, Quanwei Bao1
1State Key Laboratory of Trauma, Burn, and Combined Injury, Department of Trauma Surgery, Daping Hospital, Third Military Medical University, ChongQing, China.
Abstract:
The activation of the canonical Wnt/β-catenin signaling pathway in both mesenchymal stem cells and osteoblasts has been demonstrated to increase bone mass, showing promise for the treatment of low bone volume conditions such as osteoporosis. However, the possible side effects of manipulating this pathway have not been fully addressed. Previously, we reported that the constitutive activation of ß-catenin in osteoblasts impaired vertebral linear growth. In the present study, β-catenin was constitutively activated in osteocytes by crossing Catnb+/lox(exon 3) mice with dentin matrix protein 1(DMP1)-Cre transgenic mice, and the effects of this activation on bone mass, bone growth and bone strength were then observed. DMP1-Cre was found to be predominantly expressed in osteocytes, with weak expression in a small portion of osteoblasts and growth plate chondrocytes. After the activation, the cancellous bone mass was dramatically increased, almost filling the entire bone marrow cavity in long bones. However, bone strength decreased significantly. Thinner and more porous cortical bone along with impaired mineralization were responsible for the decrease in bone strength. Furthermore, the mice showed shorter stature with impaired linear growth of the long bones. Moreover, the concentration of serum phosphate decreased significantly after the activation of ß-catenin, and a high inorganic phosphate (Pi) diet could partially rescue the phenotype of decreased mineralization level and impaired linear growth. Taken together, the constitutive activation of β-catenin in osteocytes may increase cancellous bone mass; however, the activation also had adverse effects on bone strength and bone growth. These adverse effects should be addressed before the adoption of any therapeutic clinical application involving adjustment of the Wnt/β-catenin signaling pathway.
Insights
Constitutively activating beta-catenin in osteocytes boosts cancellous bone mass but impairs bone strength and linear growth. These findings highlight potential adverse effects for Wnt/beta-catenin pathway therapies.
Area of Science:
- Bone biology and regenerative medicine
- Skeletal development and disease
Background:
- The Wnt/β-catenin signaling pathway is crucial for bone formation and is a therapeutic target for osteoporosis.
- Previous studies showed constitutive β-catenin activation in osteoblasts impairs vertebral growth.
- Potential adverse effects of manipulating this pathway require thorough investigation.
Purpose of the Study:
- To investigate the effects of constitutive β-catenin activation specifically in osteocytes on bone mass, growth, and strength.
- To determine the consequences of targeting the Wnt/β-catenin pathway in mature bone cells.
Main Methods:
- Generated transgenic mice with Cre-lox system for conditional β-catenin activation in osteocytes using DMP1-Cre.
- Analyzed bone mass, microarchitecture, and mechanical properties using micro-CT and biomechanical testing.
- Assessed linear bone growth, mineralization, and serum phosphate levels.
Main Results:
- Constitutive β-catenin activation in osteocytes dramatically increased cancellous bone mass.
- Bone strength significantly decreased due to thinner, more porous cortical bone and impaired mineralization.
- Mice exhibited shorter stature with impaired long bone linear growth, partially rescued by a high phosphate diet.
Conclusions:
- While activating β-catenin in osteocytes increases cancellous bone, it detrimentally affects cortical bone quality, strength, and overall skeletal growth.
- Adverse effects on bone strength and growth must be considered for therapeutic applications targeting the Wnt/β-catenin pathway.
Related Concept Videos
Hormones and Bone Tissue
Hormones That Influence Osteoblasts and/or Maintain the Matrix
Several hormones are necessary for controlling bone growth and maintaining the bone matrix. The pituitary gland secretes growth hormone (GH), which, as its name implies, controls bone growth. This happens in several ways: first, it triggers chondrocyte...
Osteoclasts in Bone Remodeling
Catenins
Catenins in Cell Junctions
Catenins bind to cell adhesion molecules such as cadherins and link them to different cytoskeletal proteins depending on the type of cell junction. At the...
Bone Disorders
Bone deposition is also affected by the levels of sex hormones like estrogen and testosterone that promote osteoblast activity and bone matrix synthesis. When the level of these hormones decreases due to aging, it causes a reduction in bone deposition. As a result, bone resorption by osteoclasts...
Bone Remodeling
Role of Vitamins in Maintaining Bone Health
Vitamin A
Vitamin A is involved in the process of bone remodeling. Retinoic acid, the active metabolite of Vitamin A, has nuclear receptors in osteoblasts and osteoclasts, which are involved in bone remodeling.
Vitamin B12
Vitamin B12 acts as a cofactor during the formation of osteoblast-related proteins, such as osteocalcin. Vitamin B12 plays a role...

