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Updated: Jan 29, 2026

A Pathway Association Study Tool for GWAS Analyses of Metabolic Pathway Information
Published on: July 1, 2020
Exploration of the chondrosarcoma metabolome; the mTOR pathway as an important pro-survival pathway
Ruben D Addie1, Yvonne de Jong1, Gaia Alberti1
1Department of Pathology, Leiden University Medical Centre, Leiden, the Netherlands.
Background:
Chondrosarcomas are malignant cartilage-producing tumors showing mutations and changes in gene expression in metabolism related genes. In this study, we aimed to explore the metabolome and identify targetable metabolic vulnerabilities in chondrosarcoma.
Methods:
A custom-designed metabolic compound screen containing 39 compounds targeting different metabolic pathways was performed in chondrosarcoma cell lines JJ012, SW1353 and CH2879. Based on the anti-proliferative activity, six compounds were selected for validation using real-time metabolic profiling. Two selected compounds (rapamycin and sapanisertib) were further explored for their effect on viability, apoptosis and metabolic dependency, in normoxia and hypoxia. In vivo efficacy of sapanisertib was tested in a chondrosarcoma orthotopic xenograft mouse model.
Results:
Inhibitors of glutamine, glutathione, NAD synthesis and mTOR were effective in chondrosarcoma cells. Of the six compounds that were validated on the metabolic level, mTOR inhibitors rapamycin and sapanisertib showed the most consistent decrease in oxidative and glycolytic parameters. Chondrosarcoma cells were sensitive to mTORC1 inhibition using rapamycin. Inhibition of mTORC1 and mTORC2 using sapanisertib resulted in a dose-dependent decrease in viability in all chondrosarcoma cell lines. In addition, induction of apoptosis was observed in CH2879 after 24 h. Treatment of chondrosarcoma xenografts with sapanisertib slowed down tumor growth compared to control mice.
Conclusions:
mTOR inhibition leads to a reduction of oxidative and glycolytic metabolism and decreased proliferation in chondrosarcoma cell lines. Although further research is needed, these findings suggest that mTOR inhibition might be a potential therapeutic option for patients with chondrosarcoma.
Insights
Targeting the mTOR pathway with inhibitors like sapanisertib shows promise for treating chondrosarcoma. This approach reduces tumor cell metabolism and proliferation, offering a potential new therapeutic strategy for this rare cancer.
Area of Science:
- Oncology
- Metabolic Pathways
- Cancer Therapeutics
Background:
- Chondrosarcomas are malignant tumors characterized by altered metabolism.
- Identifying metabolic vulnerabilities is crucial for developing targeted therapies.
Purpose of the Study:
- To explore the metabolome of chondrosarcoma.
- To identify targetable metabolic vulnerabilities in chondrosarcoma.
Main Methods:
- Conducted a metabolic compound screen on chondrosarcoma cell lines.
- Validated compounds using real-time metabolic profiling.
- Assessed drug effects on cell viability, apoptosis, and metabolism.
- Tested *in vivo* efficacy in a mouse xenograft model.
Main Results:
- mTOR inhibitors (rapamycin, sapanisertib) effectively reduced oxidative and glycolytic metabolism.
- Sapanisertib demonstrated dose-dependent reduction in viability and induced apoptosis.
- Sapanisertib treatment slowed tumor growth in a chondrosarcoma xenograft model.
Conclusions:
- mTOR inhibition decreases metabolism and proliferation in chondrosarcoma.
- mTOR inhibitors represent a potential therapeutic strategy for chondrosarcoma.
- Further research is warranted to explore clinical applications.
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