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A Syngeneic Orthotopic Osteosarcoma Sprague Dawley Rat Model with Amputation to Control Metastasis Rate
Published on: May 3, 2021
ErbB3 silencing reduces osteosarcoma cell proliferation and tumor growth in vivo
Nicolas Jullien1, François-Xavier Dieudonné, Nadia Habel
1INSERM UMR606, Paris, France.
Abstract:
Osteosarcoma is the most common primary bone tumor in children and adults. Despite improved prognosis, resistance to chemotherapy remains responsible for failure of osteosarcoma treatment. The identification of the molecular signals that contribute to the aberrant osteosarcoma cell growth may provide clues to develop new therapeutic strategies for chemoresistant osteosarcoma. Here we show that the expression of ErbB3 is increased in human osteosarcoma cells in vitro. Tissue microarray analysis of tissue cores from osteosarcoma patients further showed that the ErbB3 protein expression is higher in bone tumors compared to normal bone tissue, and is further increased in patients with recurrent disease or soft tissue metastasis. In murine osteosarcoma cells, silencing ErbB3 using shRNA decreased cell replication, cell migration and invasion, indicating that ErbB3 contributes to tumor cell growth and invasiveness. Furthermore, ErbB3 silencing markedly reduced tumor growth in a murine allograft model in vivo. Immunohistochemal analysis showed that the reduced tumor growth induced by ErbB3 silencing in this model resulted from decreased cell osteosarcoma cell proliferation, supporting a role of ErbB3 in bone tumor growth in vivo. Taken together, the results reveal that ErbB3 expression in human osteosarcoma correlates with tumor grade. Furthermore, silencing ErbB3 in a murine osteosarcoma model results in decreased cell growth and invasiveness in vitro, and reduced tumor growth in vivo, which supports the potential therapeutic interest of targeting ErbB3 in osteosarcoma.
Insights
ErbB3 (ErbB3) protein is elevated in osteosarcoma, driving tumor growth and spread. Targeting ErbB3 may offer new therapeutic strategies for this challenging bone cancer.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Osteosarcoma is the most common primary bone cancer.
- Chemotherapy resistance limits treatment efficacy for osteosarcoma.
- Identifying molecular drivers of osteosarcoma growth is crucial for new therapies.
Purpose of the Study:
- To investigate the role of ErbB3 (ErbB3) in osteosarcoma.
- To determine if ErbB3 expression correlates with osteosarcoma progression.
- To evaluate ErbB3 as a potential therapeutic target in osteosarcoma.
Main Methods:
- Analyzed ErbB3 expression in human osteosarcoma tissues using tissue microarrays.
- Utilized shRNA to silence ErbB3 in murine osteosarcoma cells in vitro.
- Assessed the impact of ErbB3 silencing on cell proliferation, migration, and invasion.
- Evaluated tumor growth in a murine allograft model after ErbB3 silencing.
Main Results:
- ErbB3 protein expression is significantly higher in human osteosarcoma tissues compared to normal bone.
- Elevated ErbB3 levels correlate with increased tumor grade, recurrence, and metastasis.
- In vitro, ErbB3 silencing reduced osteosarcoma cell replication, migration, and invasion.
- In vivo, ErbB3 silencing markedly inhibited tumor growth by decreasing cell proliferation.
Conclusions:
- ErbB3 expression is a potential biomarker for osteosarcoma progression.
- Targeting ErbB3 demonstrates therapeutic potential for treating osteosarcoma.
- ErbB3 plays a critical role in osteosarcoma cell growth, invasion, and tumor development.
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