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Published on: September 16, 2020
The mesenchymal stem cell marker CD248 (endosialin) is a negative regulator of bone formation in mice
Amy J Naylor1, Eman Azzam, Stuart Smith
1University of Birmingham, Birmingham, UK.
Objective:
CD248 (tumor endothelial marker 1/endosialin) is found on stromal cells and is highly expressed during malignancy and inflammation. Studies have shown a reduction in inflammatory arthritis in CD248-knockout (CD248(-/-) ) mice. The aim of the present study was to investigate the functional effect of genetic deletion of CD248 on bone mass.
Methods:
Western blotting, polymerase chain reaction, and immunofluorescence were used to investigate the expression of CD248 in humans and mice. Micro-computed tomography and the 3-point bending test were used to measure bone parameters and mechanical properties of the tibiae of 10-week-old wild-type (WT) or CD248(-/-) mice. Human and mouse primary osteoblasts were cultured in medium containing 10 mM β-glycerophosphate and 50 microg/ml ascorbic acid to induce mineralization, and then treated with platelet-derived growth factor BB (PDGF-BB). The mineral apposition rate in vivo was calculated by identifying newly formed bone via calcein labeling.
Results:
Expression of CD248 was seen in human and mouse osteoblasts, but not osteoclasts. CD248(-/-) mouse tibiae had higher bone mass and superior mechanical properties (increased load required to cause fracture) compared to WT mice. Primary osteoblasts from CD248(-/-) mice induced increased mineralization in vitro and produced increased bone over 7 days in vivo. There was no decrease in bone mineralization and no increase in proliferation of osteoblasts in response to stimulation with PDGF-BB, which could be attributed to a defect in PDGF signal transduction in the CD248(-/-) mice.
Conclusion:
There is an unmet clinical need to address rheumatoid arthritis-associated bone loss. Genetic deletion of CD248 in mice results in high bone mass due to increased osteoblast-mediated bone formation, suggesting that targeting CD248 in rheumatoid arthritis may have the effect of increasing bone mass in addition to the previously reported effect of reducing inflammation.
Insights
Genetic deletion of CD248 (tumor endothelial marker 1) in mice increases bone mass. This suggests targeting CD248 may help bone loss in rheumatoid arthritis.
Area of Science:
- Bone Biology and Rheumatology
- Cellular and Molecular Biology
Background:
- CD248 (tumor endothelial marker 1/endosialin) is expressed on stromal cells and elevated in malignancy and inflammation.
- CD248 knockout mice exhibit reduced inflammatory arthritis.
- The role of CD248 in bone mass regulation is not well understood.
Purpose of the Study:
- To investigate the impact of genetic CD248 deletion on bone mass.
- To explore the mechanisms underlying CD248's effect on bone formation.
Main Methods:
- Investigated CD248 expression in human and mouse osteoblasts and osteoclasts using Western blotting, PCR, and immunofluorescence.
- Assessed bone mass and mechanical properties in wild-type and CD248 knockout mice using micro-computed tomography and 3-point bending tests.
- Evaluated osteoblast mineralization in vitro and bone formation in vivo, including mineral apposition rate.
Main Results:
- CD248 is expressed in osteoblasts but not osteoclasts.
- CD248 knockout mice displayed significantly higher bone mass and improved mechanical strength compared to wild-type controls.
- Osteoblasts from CD248 knockout mice showed enhanced in vitro mineralization and increased in vivo bone formation.
Conclusions:
- Genetic deletion of CD248 leads to increased bone mass primarily through enhanced osteoblast-mediated bone formation.
- Targeting CD248 in conditions like rheumatoid arthritis could potentially increase bone mass, complementing its anti-inflammatory effects.
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