The landscape of drug sensitivity and resistance in sarcoma

Insights

Patient-derived tumor organoids (PDTOs) enable rapid drug screening for rare sarcomas. This functional precision medicine approach identifies effective treatments, improving outcomes for patients with diverse sarcoma subtypes.

Area of Science:

  • Oncology
  • Cancer Biology
  • Drug Discovery

Background:

  • Sarcomas are rare cancers with over 100 subtypes, posing challenges for clinical trials and standard-of-care treatment development.
  • Patient-derived tumor organoids (PDTOs) offer a promising preclinical model for studying individual tumor biology and drug responses.
  • There is a critical need for personalized approaches to identify effective therapies for sarcoma patients due to treatment heterogeneity.

Approach:

  • Established and characterized over 120 PDTOs from 194 specimens across 24 sarcoma subtypes.
  • Utilized a high-throughput drug screening pipeline to test chemotherapeutics, targeted agents, and combination therapies on PDTOs.
  • Correlated organoid sensitivity with clinical features, genetic data, and patient outcomes.

Key Points:

  • Sarcoma PDTOs accurately recapitulated patient-specific growth and subtype-specific histopathology.
  • Organoid drug sensitivity correlated with clinical parameters like subtype, age, lesion type, and treatment history.
  • High-throughput screening provided functional, actionable information orthogonal to genetic sequencing, identifying effective regimens for 59% of specimens.

Conclusions:

  • PDTOs are valuable tools for understanding sarcoma biology, drug resistance, and sensitivity.
  • Functional precision medicine programs using PDTOs are feasible at a single institution for rare cancers.
  • This approach can guide optimal drug selection, avoid ineffective therapies, and improve patient outcomes in sarcoma treatment.