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Updated: Oct 5, 2025

Comparative Lesions Analysis Through a Targeted Sequencing Approach
Published on: November 5, 2019
Therapeutic Implication of Genomic Landscape of Adult Metastatic Sarcoma
Xiaolan Feng1, Erin Pleasance2, Eric Y Zhao2
1BC Cancer, Victoria, British Columbia, Canada.
Purpose:
This study investigated therapeutic potential of integrated genome and transcriptome profiling of metastatic sarcoma, a rare but extremely heterogeneous group of aggressive mesenchymal malignancies with few systemic therapeutic options.
Methods:
Forty-three adult patients with advanced or metastatic non-GI stromal tumor sarcomas of various histology subtypes who were enrolled in the Personalized OncoGenomics program at BC Cancer were included in this study. Fresh tumor tissues along with blood samples underwent whole-genome and transcriptome sequencing.
Results:
The most frequent genomic alterations in this cohort are large-scale structural variation and somatic copy number variation. Outlier RNA expression as well as somatic copy number variations, structural variations, and small mutations together suggest the presence of one or more potential therapeutic targets in the majority of patients in our cohort. Point mutations or deletions in known targetable cancer genes are rare; for example, tuberous sclerosis complex 2 provides a rationale for targeting the mammalian target of rapamycin pathway, resulting in a few patients with exceptional clinical benefit from everolimus. In addition, we observed recurrent 17p11-12 amplifications, which seem to be a sarcoma-specific event. This may suggest that this region harbors an oncogene(s) that is significant for sarcoma tumorigenesis. Furthermore, some sarcoma tumors carrying a distinct mutational signature suggestive of homologous recombination deficiency seem to demonstrate sensitivity to double-strand DNA-damaging agents.
Conclusion:
Integrated large-scale genomic analysis may provide insights into potential therapeutic targets as well as novel biologic features of metastatic sarcomas that could fuel future experimental and clinical research and help design biomarker-driven basket clinical trials for novel therapeutic strategies.
Insights
Integrated genomic and transcriptome profiling identified potential therapeutic targets in metastatic sarcoma patients. This approach revealed novel biologic features and suggests biomarker-driven clinical trials for advanced sarcoma treatment.
Area of Science:
- Oncology
- Genomics
- Transcriptomics
Background:
- Metastatic sarcoma is a rare, aggressive cancer with limited systemic treatment options.
- Heterogeneity in sarcoma presents challenges for developing effective therapies.
Purpose of the Study:
- To investigate the therapeutic potential of integrated genome and transcriptome profiling in metastatic sarcoma.
- To identify actionable therapeutic targets and novel biologic insights in advanced sarcoma.
Main Methods:
- Whole-genome and transcriptome sequencing were performed on tumor tissues and blood samples from 43 adult patients with advanced non-GIST sarcomas.
- Patients were enrolled in the Personalized OncoGenomics program at BC Cancer.
Main Results:
- Frequent alterations include large-scale structural variations and somatic copy number variations.
- Combined genomic and transcriptomic data suggest therapeutic targets in most patients.
- Rare point mutations in known targetable genes were observed; one patient benefited from everolimus targeting the mTOR pathway.
- Recurrent 17p11-12 amplifications suggest a sarcoma-specific oncogene.
- A mutational signature indicative of homologous recombination deficiency suggests sensitivity to DNA-damaging agents.
Conclusions:
- Integrated genomic analysis provides insights into therapeutic targets and novel biology of metastatic sarcomas.
- Findings support future research and the design of biomarker-driven clinical trials for sarcoma.
- This approach can help develop novel therapeutic strategies for this rare malignancy.
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