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Published on: May 31, 2016
Thrombospondin-1 regulates bone homeostasis through effects on bone matrix integrity and nitric oxide signaling in
Sarah R Amend1, Ozge Uluckan, Michelle Hurchla
1Division of Oncology, Department of Medicine, Washington University School of Medicine, St. Louis, MO, USA.
Abstract:
Thrombospondin-1 (TSP1), an endogenous antiangiogenic, is a widely expressed secreted ligand with roles in migration, adhesion, and proliferation and is a target for new therapeutics. While TSP1 is present in the bone matrix and several TSP1 receptors play roles in bone biology, the role of TSP1 in bone remodeling has not been fully elucidated. Bone turnover is characterized by coordinated activity of bone-forming osteoblasts (OB) and bone-resorbing osteoclasts (OC). TSP1-/- mice had increased bone mass and increased cortical bone size and thickness compared to wild type (WT). However, despite increased size, TSP1-/- femurs showed less resistance to bending than expected, indicative of diminished bone quality and a bone material defect. Additionally, we found that TSP1 deficiency resulted in decreased OC activity in vivo and reduced OC differentiation. TSP1 was critical during early osteoclastogenesis, and TSP1 deficiency resulted in a substantial overexpression of inducible nitric oxide synthase (iNOS). Importantly, administration of a NOS inhibitor rescued the OC function defects of TSP1-/- mice in vivo. To investigate the role of bone-derived TSP1 in osteoclastogenesis, we found that WT pre-OCs had defective iNOS expression when cultured on TSP1-/- bone compared to WT bone, suggesting that TSP1 in bone plays a critical role in iNOS signaling during OC development. These data implicate a new role for TSP1 in bone homeostasis with roles in maintaining bone matrix integrity and regulating OC formation. It will be critical to monitor bone health of patients administered TSP1-pathway directed therapeutics in clinical use and under development.
Insights
Thrombospondin-1 (TSP1) deficiency increases bone mass but impairs bone quality by reducing osteoclast activity, linked to altered inducible nitric oxide synthase (iNOS) signaling.
Area of Science:
- Bone biology
- Skeletal remodeling
- Vascular biology
Background:
- Thrombospondin-1 (TSP1) is an antiangiogenic factor involved in cell adhesion and proliferation.
- TSP1 is present in bone matrix, but its role in bone remodeling is unclear.
- Bone remodeling involves osteoblasts (OB) and osteoclasts (OC).
Purpose of the Study:
- To elucidate the role of TSP1 in bone remodeling and bone quality.
- To investigate the impact of TSP1 deficiency on osteoclastogenesis and bone matrix integrity.
Main Methods:
- Analysis of bone mass, size, thickness, and material properties in TSP1-/- and WT mice.
- Assessment of osteoclast activity and differentiation in vivo and in vitro.
- Evaluation of inducible nitric oxide synthase (iNOS) expression and the effect of NOS inhibitors.
Main Results:
- TSP1-/- mice exhibited increased bone mass and cortical bone size but reduced bone quality and bending resistance.
- TSP1 deficiency led to decreased osteoclast activity and impaired osteoclast differentiation, associated with iNOS overexpression.
- Inhibition of nitric oxide synthase (NOS) rescued osteoclast function defects in TSP1-/- mice.
- Bone-derived TSP1 is crucial for iNOS signaling during osteoclast development.
Conclusions:
- TSP1 plays a critical role in maintaining bone homeostasis, bone matrix integrity, and regulating osteoclast formation.
- Monitoring bone health is essential for patients receiving TSP1-targeted therapies.
- TSP1's role in iNOS signaling during osteoclastogenesis presents a novel therapeutic target for bone diseases.
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