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Genesis of osteoclasts on calcium phosphate ceramics and their role in material-induced bone formation
Zhangling Nie1, Zhiqiao Hu1, Xiaodong Guo2
1State Key Laboratory of Oral Diseases, National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, No. 14, Section 3, Ren Min Nan Rd, Chengdu, Sichuan 610041, China.
Abstract:
Innate immune responses play important roles in material-induced bone formation and such roles were further explored in the current study with an emphasis on M2 macrophages and osteoclastogenesis. With the presence of M-CSF and RANKL, M0 macrophages from FVB mouse bone marrow-derived monocytes (BMMs) fused to osteoclasts with both M2 marker and osteoclast marker at day 5, and such osteoclast formation at day 5 was enhanced when the cells were treated with IL-4 at day 3. With IL-4 treatment alone for 24 h, M0 polarized into M2 macrophages. Conditioned medium of M2 macrophages enhanced osteogenic differentiation of MC3T3-E1 (pre-osteoblasts) while osteoclast conditioned medium enhanced osteogenic differentiation of CRL-12424 (osteogenic precursors). TCPs (a typical osteoinductive material) supported M2 macrophage polarization at day 4 and osteoclast formation at day 5, while TCPb (a typical non-osteoinductive material) was less effective. Moreover, osteoclasts formed on TCPs produced osteogenic factors including S1P, Wnt10B and BMP-6, resulting osteogenic differentiation of CRL-12424 cells. Similar to in vitro testing, TCPs favored M2 macrophage polarization followed by the formation of osteoclasts in vivo, as compared to TCPb. The overall data provided evidence of a coupling between M2 macrophages, osteoclasts and material-induced bone formation: osteoclasts formed from M2 macrophages secrete osteogenic cytokines to induce osteogenic differentiation of osteogenic precursor cells to finally form bone. The current findings outlined a biological mechanism of material-induced bone formation and further rationalized the use of osteoinductive materials for bone regeneration. STATEMENT OF SIGNIFICANCE: This paper provides evidence for finding out the relationship between M2 macrophages, osteoclasts and osteogenesis in material-induced bone formation. It suggested that osteoinductive materials enhanced macrophage polarization to M2 macrophages which fuses to osteoclasts, osteoclasts subsequently secret osteogenic cytokines to differentiate finally osteogenic precursors to form bone in osteoinductive materials. The data supports scientifically the superiority of osteoinductive materials for bone regeneration in clinics.
Insights
Osteoinductive materials promote M2 macrophage polarization, leading to osteoclast formation that drives bone regeneration. This study reveals a key mechanism linking macrophages, osteoclasts, and bone healing with specific materials.
Area of Science:
- Biomaterials Science
- Immunology
- Regenerative Medicine
Background:
- Innate immune responses are crucial for material-induced bone formation.
- The roles of M2 macrophages and osteoclastogenesis in this process require further elucidation.
Purpose of the Study:
- To explore the role of M2 macrophages and osteoclastogenesis in material-induced bone formation.
- To investigate the mechanism by which osteoinductive materials promote bone regeneration.
Main Methods:
- Macrophage polarization studies using IL-4 treatment.
- Osteoclast differentiation assays with M-CSF and RANKL.
- Co-culture experiments with pre-osteoblasts and osteogenic precursors.
- In vitro and in vivo testing of osteoinductive (TCPs) and non-osteoinductive (TCPb) materials.
Main Results:
- IL-4 treatment induced M0 macrophage polarization into M2 macrophages.
- M2 macrophage conditioned medium enhanced osteogenic differentiation.
- Osteoinductive materials (TCPs) promoted M2 macrophage polarization and osteoclast formation more effectively than non-osteoinductive materials (TCPb).
- Osteoclasts formed on TCPs secreted osteogenic factors (S1P, Wnt10B, BMP-6), promoting osteogenic precursor differentiation.
Conclusions:
- A biological mechanism coupling M2 macrophages, osteoclasts, and material-induced bone formation was identified.
- Osteoclasts derived from M2 macrophages secrete osteogenic cytokines, inducing osteogenic precursor differentiation and bone formation.
- Osteoinductive materials enhance this process, supporting their clinical use for bone regeneration.
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