A Functional Precision Oncology Approach to Identify Treatment Strategies for Myxofibrosarcoma Patients
Chantal Pauli1, Lamberto De Boni2, Jonathan E Pauwels3
1Department of Pathology and Molecular Pathology, University Hospital Zurich, Zurich, Switzerland. chantal.pauli@usz.ch.
Abstract:
In this era of precision medicine, numerous workflows for the targeting of high-recurrent mutations in common tumor types have been developed, leaving patients with rare diseases with few options. Here, we implement a functional precision oncology approach utilizing comprehensive genomic profiling in combination with high-throughput drug screening, to identify tumor-specific drug sensitivities for patients with rare tumor types such as myxofibrosarcoma. From a patient with a high-grade myxofibrosarcoma, who was enrolled in the Englander Institute for Precision Medicine (EIPM) program, we established patient-derived 3D sarco-spheres and xenograft models for functional testing. In the absence of a large cohort of clinically similar cases, high-throughput drug screening was performed on the patient-derived cells, and compared with two other myxofibrosarcoma lines and a benign fibroblast line to functionally identify tumor-specific drug sensitivities. The addition of functional drug sensitivity testing to complement genomic profiling identified multiple therapeutic options that were further validated in patient derived xenograft models. Genomic analyses detected the frequently known codeletion of the tumor suppressors CDKN2A/B together with the methylthioadenosine phosphorylase (MTAP) and a TP53 E286fs*50 mutation. High-throughput drug screening demonstrated tumor-specific sensitivity to compounds targeting the cell cycle. Based on genomic analysis and high-throughput drug screening, we show that targeting the cell cycle in these tumors is a powerful approach. IMPLICATIONS: This study demonstrates the potential of functional testing to aid clinical decision making for patients with rare or molecularly complex malignancies when combined with comprehensive genomic profiling.
Insights
Functional precision oncology successfully identified novel drug sensitivities for rare myxofibrosarcoma by combining genomic profiling with high-throughput drug screening of patient-derived models.
Area of Science:
- Oncology
- Genomics
- Pharmacology
Background:
- Precision medicine often overlooks rare tumor types due to limited patient cohorts.
- Developing targeted therapies for rare diseases like myxofibrosarcoma remains challenging.
Observation:
- Established patient-derived 3D spheroids and xenograft models for a high-grade myxofibrosarcoma case.
- Conducted high-throughput drug screening on patient-derived cells, comparing them with other myxofibrosarcoma and fibroblast lines.
Findings:
- Genomic analysis revealed CDKN2A/B, MTAP codeletion, and a TP53 mutation.
- Functional drug screening identified tumor-specific sensitivities to cell cycle targeting compounds.
- Therapeutic options were validated in patient-derived xenograft models.
Implications:
- Functional testing combined with genomic profiling can guide clinical decisions for rare or complex cancers.
- Targeting the cell cycle presents a promising therapeutic strategy for myxofibrosarcoma.
- This approach offers hope for patients with limited treatment options in rare diseases.
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