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.

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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