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Published on: March 18, 2014
Direct anti-cancer effect of oncostatin M on chondrosarcoma
Emmanuelle David1, Pierre Guihard, Bénédicte Brounais
1INSERM, U957, Nantes, France.
Abstract:
The cytokine Oncostatin M (OSM) is cytostatic, pro-apoptotic and induces differentiation of osteosarcoma cells into osteocytes, suggesting new adjuvant treatment for these bone-forming sarcomas. However, OSM systemic over-expression could lead to adverse side effects such as generalized inflammation, neoangiogenesis and osteolysis. We determine here the effect of OSM on chondrosarcoma, another primary bone sarcoma characterized by the production of cartilage matrix and altered bone remodelling. Chondrosarcomas are resistant to conventional chemotherapy and radiotherapy, and wide surgical excision remains the only available treatment. We found that OSM blocked the cell cycle in four of five chondrosarcoma cell lines, independently of p53 and presumably through the JAK3/STAT1 pathway. In two tested cell lines, OSM induced a hypertrophic chondrocyte differentiation, with an induced Cbfa1/SOX9 ratio and induced Coll10, matrix metalloproteinase 13 (MMP13) and RANKL expression. Adenoviral gene transfer of OSM (AdOSM) in the Swarm rat chondrosarcoma (SRC) model indicated that local intra-tumoral OSM over-expression reduces chondrosarcoma development not only with reduced tumor proliferation and enhanced apoptosis but also with enhanced RANKL expression, osteoclast formation and reduced bone volumes. Flu-like symptoms were induced by the AdOSM, but there was no effect on tumor angiogenesis. Therefore, OSM could be considered as a new adjuvant anti-cancer agent for chondrosarcomas. A local application of this cytokine is presumably needed to overcome the poor vascularization of these tumors and to limit the deleterious effect on other tissues. Its side effect on bone remodeling could be managed with anti-resorption agents, thus offering potential new lines of therapeutic interventions.
Insights
Oncostatin M (OSM) shows potential as an adjuvant therapy for chondrosarcoma, inhibiting tumor growth and inducing differentiation. Localized OSM application may mitigate side effects while enhancing anti-tumor effects in bone sarcomas.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Chondrosarcomas are rare bone cancers resistant to conventional treatments.
- Oncostatin M (OSM) has shown anti-cancer properties in osteosarcoma.
- The therapeutic potential of OSM in chondrosarcoma remains unexplored.
Purpose of the Study:
- To investigate the effect of Oncostatin M (OSM) on chondrosarcoma cell lines and in a preclinical model.
- To evaluate OSM's impact on cell cycle, differentiation, and tumor growth in chondrosarcoma.
- To assess the feasibility of OSM as an adjuvant therapy for chondrosarcoma.
Main Methods:
- OSM treatment on five chondrosarcoma cell lines.
- Analysis of cell cycle, differentiation markers (Cbfa1/SOX9 ratio, Coll10, MMP13, RANKL).
- Adenoviral gene transfer of OSM (AdOSM) in the Swarm rat chondrosarcoma (SRC) model.
Main Results:
- OSM inhibited cell cycle progression in four of five chondrosarcoma cell lines.
- OSM induced hypertrophic chondrocyte differentiation and RANKL expression.
- Intra-tumoral AdOSM reduced tumor growth, increased apoptosis, and promoted osteoclast formation in vivo.
Conclusions:
- OSM exhibits anti-cancer activity against chondrosarcoma by inhibiting proliferation and inducing differentiation.
- Local OSM delivery may be a viable strategy to treat chondrosarcoma, with potential side effects manageable by other agents.
- OSM represents a promising candidate for novel adjuvant therapeutic strategies in chondrosarcoma treatment.
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