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Updated: Jan 19, 2026

Intratibial Osteosarcoma Cell Injection to Generate Orthotopic Osteosarcoma and Lung Metastasis Mouse Models
Published on: October 28, 2021
Smac mimetics LCL161 and GDC-0152 inhibit osteosarcoma growth and metastasis in mice
Tanmay M Shekhar1, Ingrid J G Burvenich2,3, Michael A Harris1
1Department of Biochemistry and Genetics, La Trobe Institute for Molecular Science, La Trobe University, Bundoora, Victoria, 3086, Australia.
Background:
Current therapies fail to cure over a third of osteosarcoma patients and around three quarters of those with metastatic disease. "Smac mimetics" (also known as "IAP antagonists") are a new class of anti-cancer agents. Previous work revealed that cells from murine osteosarcomas were efficiently sensitized by physiologically achievable concentrations of some Smac mimetics (including GDC-0152 and LCL161) to killing by the inflammatory cytokine TNFα in vitro, but survived exposure to Smac mimetics as sole agents.
Methods:
Nude mice were subcutaneously or intramuscularly implanted with luciferase-expressing murine 1029H or human KRIB osteosarcoma cells. The impacts of treatment with GDC-0152, LCL161 and/or doxorubicin were assessed by caliper measurements, bioluminescence, 18FDG-PET and MRI imaging, and by weighing resected tumors at the experimental endpoint. Metastatic burden was examined by quantitative PCR, through amplification of a region of the luciferase gene from lung DNA. ATP levels in treated and untreated osteosarcoma cells were compared to assess in vitro sensitivity. Immunophenotyping of cells within treated and untreated tumors was performed by flow cytometry, and TNFα levels in blood and tumors were measured using cytokine bead arrays.
Results:
Treatment with GDC-0152 or LCL161 suppressed the growth of subcutaneously or intramuscularly implanted osteosarcomas. In both models, co-treatment with doxorubicin and Smac mimetics impeded average osteosarcoma growth to a greater extent than either drug alone, although these differences were not statistically significant. Co-treatments were also more toxic. Co-treatment with LCL161 and doxorubicin was particularly effective in the KRIB intramuscular model, impeding primary tumor growth and delaying or preventing metastasis. Although the Smac mimetics were effective in vivo, in vitro they only efficiently killed osteosarcoma cells when TNFα was supplied. Implanted tumors contained high levels of TNFα, produced by infiltrating immune cells. Spontaneous osteosarcomas that arose in genetically-engineered immunocompetent mice also contained abundant TNFα.
Conclusions:
These data imply that Smac mimetics can cooperate with TNFα secreted by tumor-associated immune cells to kill osteosarcoma cells in vivo. Smac mimetics may therefore benefit osteosarcoma patients whose tumors contain Smac mimetic-responsive cancer cells and TNFα-producing infiltrating cells.
Insights
Smac mimetics, new anti-cancer agents, show promise in treating osteosarcoma. When combined with TNFα, these agents effectively kill cancer cells in vivo, offering a potential new therapy for patients with difficult-to-treat osteosarcoma.
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- Osteosarcoma therapies are insufficient for over a third of patients, especially those with metastatic disease.
- Smac mimetics (IAP antagonists) represent a novel class of anti-cancer agents.
- Previous studies indicated Smac mimetics sensitize osteosarcoma cells to TNFα in vitro, but are ineffective alone.
Purpose of the Study:
- To evaluate the efficacy of Smac mimetics (GDC-0152, LCL161) alone and in combination with doxorubicin against osteosarcoma in vivo.
- To investigate the role of TNFα in Smac mimetic-mediated osteosarcoma cell killing.
- To assess the therapeutic potential of Smac mimetics in osteosarcoma treatment.
Main Methods:
- Osteosarcoma models were established using luciferase-expressing murine and human cells implanted in nude mice.
- Tumor growth was monitored using caliper measurements, bioluminescence, PET, and MRI.
- Metastatic burden, ATP levels, immunophenotyping, and TNFα levels were analyzed.
Main Results:
- Smac mimetics (GDC-0152, LCL161) suppressed osteosarcoma growth in vivo.
- Combination therapy with doxorubicin and Smac mimetics showed enhanced tumor growth inhibition, particularly in the KRIB model, and delayed metastasis.
- In vitro, Smac mimetics required TNFα for efficient osteosarcoma cell killing, and tumors contained high endogenous TNFα levels.
Conclusions:
- Smac mimetics synergize with tumor-associated immune cell-derived TNFα to eliminate osteosarcoma cells in vivo.
- This combination therapy holds potential for osteosarcoma patients with responsive tumors and TNFα-producing immune infiltrates.
- Smac mimetics represent a promising therapeutic strategy for osteosarcoma, particularly in combination with agents that modulate the tumor microenvironment.
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