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Published on: March 18, 2019
TNFα inhibits the development of osteoclasts through osteoblast-derived GM-CSF
Elvis Atanga1, Silvia Dolder, Tina Dauwalder
1Group for Bone Biology and Orthopaedic Research, Department Clinical Research, University of Bern, Murtenstrasse 35, CH-3010 Bern, Switzerland. elvis.atanga@dkf.unibe.ch
Abstract:
Inflammatory cytokines such as tumor necrosis factor-alpha (TNFα) are potent stimulators of osteoclast formation and bone resorption and are frequently associated with pathologic bone metabolism. The cytokine exerts specific effects on its target cells and constitutes a part of the cellular microenvironment. Previously, TNFα was demonstrated to inhibit the development of osteoclasts in vitro via an osteoblast-mediated pathway. In the present study, the molecular mechanisms of the inhibition of osteoclastogenesis were investigated in co-cultures of osteoblasts and bone marrow cells (BMC) and in cultures of macrophage-colony stimulating factor (M-CSF) dependent, non-adherent osteoclast progenitor cells (OPC) grown with M-CSF and receptor activator of NF-κB ligand (RANKL). Granulocyte-macrophage colony stimulating factor (GM-CSF), a known inhibitor of osteoclastogenesis was found to be induced in osteoblasts treated with TNFα and the secreted protein accumulated in the supernatant. Dexamethasone (Dex), an anti-inflammatory steroid, caused a decrease in GM-CSF expression, leading to partial recovery of osteoclast formation. Flow cytometry analysis revealed that in cultures of OPC, supplemented with 10% conditioned medium (CM) from osteoblasts treated with TNFα/1,25(OH)(2)D(3), expression of RANK and CD11c was suppressed. The decrease in RANK expression may be explained by the finding, that GM-CSF and the CM from wt osteoblasts were found to suppress the expression of c-Fos, Fra-1, and Nfatc-1. The failure of OPC to develop into CD11c(+) dendritic cells suggests that cell development is not deviated to an alternative differentiation pathway, but rather, that the monocytes are maintained in an undifferentiated, F4/80(+), state. The data further implies possible interactions among inflammatory cytokines. GM-CSF induced by TNFα acts on early hematopoietic precursors, inhibiting osteoclastogenesis while acting as the growth factor for M-CSF independent inflammatory macrophages. These in turn may condition a microenvironment enhancing osteoclast differentiation and bone resorption upon migration of the OPC from circulation to the bone/bone marrow compartment.
Insights
Tumor necrosis factor-alpha (TNFα) induces granulocyte-macrophage colony stimulating factor (GM-CSF) in osteoblasts, inhibiting osteoclast formation. This cytokine pathway offers new insights into managing bone metabolism and inflammatory bone diseases.
Area of Science:
- Biochemistry
- Cell Biology
- Immunology
Background:
- Inflammatory cytokines, like tumor necrosis factor-alpha (TNFα), significantly influence bone metabolism by stimulating osteoclast formation and resorption.
- Pathologic bone remodeling is often linked to elevated levels of inflammatory cytokines.
- Previous research indicated TNFα could inhibit osteoclast development through an osteoblast-mediated mechanism.
Purpose of the Study:
- To elucidate the molecular mechanisms by which TNFα inhibits osteoclastogenesis.
- To investigate the role of granulocyte-macrophage colony stimulating factor (GM-CSF) in TNFα-induced inhibition of osteoclast formation.
- To explore the impact of TNFα on osteoclast progenitor cell (OPC) differentiation and gene expression.
Main Methods:
- Co-culture systems involving osteoblasts and bone marrow cells (BMC).
- Cultures of macrophage-colony stimulating factor (M-CSF) dependent osteoclast progenitor cells (OPC) with M-CSF and receptor activator of NF-κB ligand (RANKL).
- Flow cytometry to analyze cell surface marker expression (RANK, CD11c, F4/80) and gene expression (c-Fos, Fra-1, Nfatc-1).
- Treatment with TNFα, dexamethasone (Dex), and conditioned medium (CM) from treated osteoblasts.
Main Results:
- TNFα treatment induced GM-CSF production in osteoblasts, which accumulated in the supernatant.
- Dexamethasone (Dex) reduced GM-CSF expression, partially restoring osteoclast formation.
- In OPC cultures, TNFα/1,25(OH)(2)D(3)-treated osteoblast CM suppressed RANK and CD11c expression.
- GM-CSF and conditioned medium suppressed the expression of key osteoclastogenic genes: c-Fos, Fra-1, and Nfatc-1.
- OPC failed to differentiate into CD11c(+) dendritic cells, remaining in an undifferentiated F4/80(+) state.
Conclusions:
- TNFα-induced GM-CSF in osteoblasts is a key mediator inhibiting osteoclastogenesis.
- GM-CSF suppresses osteoclast progenitor differentiation by downregulating essential transcription factors.
- The findings suggest complex interactions where TNFα-induced GM-CSF can inhibit osteoclast formation while potentially promoting inflammatory macrophage proliferation.
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