Ex vivo drug sensitivity profiling to complement molecular profiling in pediatric precision oncology

Marlinde C Schoonbeek1, Pierre Gestraud2, Lindy Vernooij1

  • 1Princess Máxima Center for Pediatric Oncology, Utrecht, The Netherlands.

NPJ Precision Oncology
|January 10, 2026
PubMed

Insights

Short-term ex vivo drug screening rapidly identifies effective treatments for pediatric solid tumors. This method offers crucial insights into drug efficacy, improving therapeutic options for high-risk patients when molecular profiling is insufficient.

Area of Science:

  • Oncology
  • Pharmacology
  • Translational Medicine

Background:

  • High-risk pediatric extra-cranial solid tumors have poor prognoses with survival rates below 50%.
  • Molecular profiling alone is often insufficient for guiding treatment decisions during tumor relapse.
  • Novel strategies are needed to rapidly assess drug sensitivities in pediatric cancers.

Purpose of the Study:

  • To evaluate short-term ex vivo drug screening as a rapid and reliable method for assessing drug sensitivities in pediatric solid tumors.
  • To determine the feasibility and consistency of ex vivo drug screening across multiple institutions.
  • To identify effective compounds and therapeutic strategies for pediatric solid tumors, particularly in cases lacking targetable alterations.

Main Methods:

  • Utilized ex vivo cultures derived from established patient-derived xenograft (PDX) models of pediatric solid tumors.
  • Performed drug screening within 14 days of sample receipt, testing 77-224 compounds per sample.
  • Ensured consistency and reproducibility by conducting experiments across two institutes and using replicate models.

Main Results:

  • Ex vivo drug screening demonstrated consistent drug responses across institutes and reproducibility in replicate models.
  • Observed tumor type-specific drug sensitivities, with neuroblastoma showing correlations between transcriptomic changes and ALK-inhibitor response, independent of ALK-mutation status.
  • Identified effective drug 'hits' in 94% of screens, expanding treatment options for 88% of cases lacking targetable alterations and refining compound choices when targetable events were present.

Conclusions:

  • Ex vivo drug screening is a fast, feasible, and reliable method for assessing compound efficacy in pediatric solid tumors.
  • This approach provides valuable insights for identifying functional treatment suggestions, especially for tumors without known targetable alterations.
  • Recommends integrating ex vivo drug screening into future next-generation diagnostic platforms for pediatric solid tumors, alongside genomics and transcriptomics.

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