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Updated: Aug 17, 2025

Intratibial Osteosarcoma Cell Injection to Generate Orthotopic Osteosarcoma and Lung Metastasis Mouse Models
Published on: October 28, 2021
Targeted alpha therapy with the 224Ra/212Pb-TCMC-TP-3 dual alpha solution in a multicellular tumor spheroid model of
Anna Julie Kjøl Tornes1,2,3, Vilde Yuli Stenberg1,2,3, Roy Hartvig Larsen2
1Department of Radiation Biology, Institute for Cancer Research, Oslo University Hospital, Oslo, Norway.
Abstract:
Osteosarcoma patients with overt metastases at primary diagnosis have a 5-year survival rate of less than 20%. TP-3 is a murine IgG2b monoclonal antibody with high affinity for an epitope residing on the p80 osteosarcoma cell surface membrane antigen. The tumor-associated antigen p80 is overexpressed in osteosarcomas, and has very low normal tissue expression. We propose a novel dual alpha targeting solution containing two radionuclides from the same decay chain, including the bone-seeking 224Ra, and cancer cell-surface seeking 212Pb-TCMC-TP-3 for the treatment of osteoblastic bone cancers, circulating cancer cells and micrometastases. In this in vitro study, the cytotoxic effects of 212Pb-TCMC-TP-3 (single alpha solution) and 224Ra/212Pb-TCMC-TP-3 (dual alpha solution) were investigated in a multicellular spheroid model mimicking micrometastatic disease in osteosarcoma. OHS spheroids with diameters of 253 ± 98 μm treated with 4.5, 2.7, and 3.3 kBq/ml of 212Pb-TCMC-TP-3 for 1, 4, and 24 h, respectively, were disintegrated within 3 weeks. The 212Pb-TCMC-TP-3 induced a 7-fold delay in spheroid doubling time compared to a 28-times higher dose with the non-specific 212Pb-TCMC-rituximab. The 224Ra/212Pb-TCMC-TP-3 completely disintegrated spheroids with diameters of 218-476 μm within 3 and 2 weeks after 4 and 24 h incubation with 5 kBq/ml, respectively. Treatment with 1 kBq/ml of 224Ra/212Pb-TCMC-TP-3 for 24 h caused an 11.4-fold reduction in spheroid viability compared with unconjugated 224Ra/212Pb. The single and dual alpha solutions with TP-3 showed cytotoxicity in spheroids of clinically relevant size, which warrant further testing of the dual alpha solution using in vivo osteosarcoma models.
Insights
A novel dual alpha targeting solution using TP-3 antibody demonstrated significant efficacy against osteosarcoma micrometastases in vitro. This targeted therapy offers a promising new approach for treating bone cancers with reduced survival rates.
Area of Science:
- Oncology
- Radiochemistry
- Immunotherapy
Background:
- Osteosarcoma with metastases has a poor prognosis (<20% 5-year survival).
- The p80 antigen is overexpressed on osteosarcoma cells with minimal normal tissue expression.
- TP-3 is a murine IgG2b antibody targeting the p80 antigen.
Purpose of the Study:
- To investigate the efficacy of a dual alpha targeting solution (224Ra/212Pb-TCMC-TP-3) against osteosarcoma micrometastases.
- To compare the cytotoxicity of single alpha (212Pb-TCMC-TP-3) and dual alpha solutions in vitro.
- To evaluate the therapeutic potential of these targeted alpha therapies in a multicellular spheroid model.
Main Methods:
- Utilized a multicellular spheroid model to mimic osteosarcoma micrometastatic disease.
- Treated spheroids with single alpha (212Pb-TCMC-TP-3) and dual alpha (224Ra/212Pb-TCMC-TP-3) solutions.
- Assessed spheroid disintegration, doubling time, and viability post-treatment.
Main Results:
- 212Pb-TCMC-TP-3 disintegrated spheroids within 3 weeks.
- 212Pb-TCMC-TP-3 showed significantly greater efficacy than non-specific 212Pb-TCMC-rituximab.
- 224Ra/212Pb-TCMC-TP-3 completely disintegrated spheroids and significantly reduced spheroid viability.
Conclusions:
- Single and dual alpha solutions targeting p80 demonstrated significant in vitro cytotoxicity against osteosarcoma spheroids.
- The dual alpha solution shows particular promise for treating osteoblastic bone cancers, circulating cells, and micrometastases.
- Further in vivo studies are warranted to validate the therapeutic potential of the dual alpha solution.

