Periosteal PTHrP Regulates Cortical Bone Remodeling During Fracture Healing
Meina Wang1, Ali R Nasiri2, Arthur E Broadus2
1Department of Orthopaedics and Rehabilitation, Yale University, New Haven, CT 06520, USA; Department of Internal Medicine, Yale University, New Haven, CT 06520, USA.
Insights
Parathyroid hormone-related protein (PTHrP) in the periosteum regulates bone formation during fracture healing. Deleting PTHrP impairs callus formation, maturation, and remodeling, indicating its crucial role in bone repair.
Area of Science:
- Orthopedics
- Bone Biology
- Regenerative Medicine
Background:
- Parathyroid hormone-related protein (PTHrP) is expressed in the periosteum (PO), a key structure for bone modeling and remodeling.
- The role of PTHrP in fracture healing, specifically within the PO, remains largely unknown.
- PTHrP is known to regulate PO modeling during development.
Purpose of the Study:
- To investigate the role of periosteal PTHrP in regulating osteoblast induction and bone formation during fracture healing.
- To determine if PTHrP in the fibrous PO layer is essential for proper fracture repair.
Main Methods:
- Utilized a tibial fracture model in PTHrP-lacZ mice to assess PTHrP expression and osteoblast induction.
- Generated PTHrP conditional knockout (cKO) mice lacking PO PTHrP for functional studies.
- Analyzed callus formation, mineralization, and osteoblast/osteoclast activity in control and cKO mice.
Main Results:
- PTHrP expression and osteoblast induction in the PO were significantly increased 3 days post-fracture.
- PTHrP cKO mice exhibited impaired callus size, formation, and woven bone mineralization.
- Reduced osteoblast formation and osteoclast activity were observed in PTHrP cKO mice.
Conclusions:
- Periosteal PTHrP plays a critical role in regulating osteoblastic activity and bone formation during fracture healing.
- Deletion of PO PTHrP leads to significant impairments in cartilaginous callus formation, maturation, ossification, and remodeling.
- These findings provide the initial genetic evidence for the essential function of PO PTHrP in cortical bone surface repair.
Abstract:
Parathyroid hormone-related protein (PTHrP) is widely expressed in the fibrous outer layer of the periosteum (PO), and the PTH/PTHrP type I receptor (PTHR1) is expressed in the inner PO cambial layer. The cambial layer gives rise to the PO osteoblasts (OBs) and osteoclasts (OCs) that model/remodel the cortical bone surface during development as well as during fracture healing. PTHrP has been implicated in the regulation of PO modeling during development, but nothing is known as regards a role of PTHrP in this location during fracture healing. We propose that PTHrP in the fibrous layer of the PO may be a key regulatory factor in remodeling bone formation during fracture repair. We first assessed whether PTHrP expression in the fibrous PO is associated with PO osteoblast induction in the subjacent cambial PO using a tibial fracture model in PTHrP-lacZ mice. Our results revealed that both PTHrP expression and osteoblast induction in PO were induced 3 days post-fracture. We then investigated a potential functional role of PO PTHrP during fracture repair by performing tibial fracture surgery in 10-week-old CD1 control and PTHrP conditional knockout (PTHrP cKO) mice that lack PO PTHrP. We found that callus size and formation as well as woven bone mineralization in PTHrP cKO mice were impaired compared to that in CD1 mice. Concordant with these findings, functional enzyme staining revealed impaired OB formation and OC activity in the cKO mice. We conclude that deleting PO PTHrP impairs cartilaginous callus formation, maturation and ossification as well as remodeling during fracture healing. These data are the initial genetic evidence suggesting that PO PTHrP may induce osteoblastic activity and regulate fracture healing on the cortical bone surface.
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