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Updated: Jun 2, 2026

A Syngeneic Orthotopic Osteosarcoma Sprague Dawley Rat Model with Amputation to Control Metastasis Rate
Published on: May 3, 2021
Targeting inflammatory kinase as an adjuvant treatment for osteosarcomas
Kyucheol Noh1, Kyung-Ok Kim, Neel R Patel
1Center for Orthopaedic Research, Department of Orthopaedic Surgery, Columbia University, 650 West 168th Street, New York, NY 10032, USA.
Background:
A subset of patients with aggressive osteosarcomas responds poorly to conventional cytotoxic chemotherapy. Recent evidence from studies involving the liver, skin, stomach, and colon suggests that carcinogenesis is associated with inflammation. Mitogen-activated protein kinase (MAPK)/extracellular signal-regulated kinase 1/2 (ERK1/2) has diverse roles in cancer and inflammation. The hypothesis of the present study is that targeted ERK1/2 inhibition will demonstrate anti-cancer effects in osteosarcoma both in vitro and in vivo.
Methods:
The therapeutic effect of PD98059, a MAPK/ERK pathway inhibitor, was examined with respect to cell death, survival, and anti-apoptotic protein expression by means of flow cytometry and immunoblotting in vitro. Additionally, we transplanted green fluorescent protein and luciferase-tagged 143B osteosarcoma cells into the proximal part of the tibia of nude mice. Mice were randomly assigned to treatment with doxorubicin, PD98059, or both. Vehicle-treated mice served as controls. Treatment outcome was assessed by measuring bioluminescence and by monitoring survival.
Results:
In vitro, ERK1/2 blockage increased the expression of pro-apoptotic proteins and increased cell death in 143B osteosarcoma cells. Doxorubicin treatment increased the expression of Bcl-2, an anti-apoptotic protein, but this upregulation was blocked by combined treatment with PD98059, suggesting a role for ERK1/2 in conferring drug resistance. In osteosarcoma-bearing mice, targeting ERK1/2 with PD98059 resulted in prolonged survival in comparison with vehicle-treated control mice (median survival time, sixty-seven days compared with seventy-four days; p = 0.0272; survival ratio = 0.9122; 95% confidence interval = 0.4354 to 1.389). Standalone doxorubicin treatment yielded similar animal morbidity (median survival time, sixty-seven days compared with seventy-six days; p = 0.0170; survival ratio = 0.8882; 95% confidence interval = 0.4181 to 1.358). Combined PD98059 and doxorubicin treatment further prolonged survival (median survival time, sixty-seven days compared with eighty-two days; p = 0.0023; survival ratio = 0.8232; 95% confidence interval = 0.3606 to 1.286).
Conclusions:
Inhibiting ERK1/2 signaling resulted in osteosarcoma cell death by upregulating pro-apoptotic genes and inhibiting the Bcl-2-mediated resistance to doxorubicin. In osteosarcoma-bearing mice, ERK1/2 targeting alone or in combination with doxorubicin prolonged survival as compared with untreated mice.
Insights
Targeting the ERK1/2 pathway with PD98059 inhibits osteosarcoma growth and increases cell death. This approach, alone or with doxorubicin, significantly prolongs survival in osteosarcoma mouse models.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Aggressive osteosarcomas often show poor response to chemotherapy.
- Carcinogenesis is linked to inflammation, with Mitogen-activated protein kinase (MAPK)/extracellular signal-regulated kinase 1/2 (ERK1/2) playing a role in cancer and inflammation.
Purpose of the Study:
- To investigate the anti-cancer effects of targeted ERK1/2 inhibition in osteosarcoma.
- To evaluate the efficacy of PD98059, a MAPK/ERK pathway inhibitor, in vitro and in vivo.
Main Methods:
- In vitro studies examined cell death and apoptosis using flow cytometry and immunoblotting.
- In vivo studies involved transplanting 143B osteosarcoma cells into nude mice, followed by treatment with doxorubicin, PD98059, or both.
- Outcomes were assessed via bioluminescence and survival monitoring.
Main Results:
- ERK1/2 inhibition in vitro increased osteosarcoma cell death and pro-apoptotic protein expression.
- PD98059 blocked doxorubicin-induced upregulation of Bcl-2, an anti-apoptotic protein, suggesting a role in drug resistance.
- In vivo, PD98059 alone and in combination with doxorubicin significantly prolonged survival in osteosarcoma-bearing mice compared to controls.
Conclusions:
- Inhibiting ERK1/2 signaling induces osteosarcoma cell death and overcomes doxorubicin resistance.
- Targeting ERK1/2, with or without doxorubicin, offers a promising therapeutic strategy for improving survival in osteosarcoma.
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