Probabilistic modeling of personalized drug combinations from integrated chemical screen and molecular data in

Noah E Berlow1,2, Rishi Rikhi3, Mathew Geltzeiler4,5

  • 1Children's Cancer Therapy Development Institute, 12655 SW Beaverdam Road-West, Beaverton, OR, 97005, USA. noah@cc-tdi.org.

BMC Cancer
|June 19, 2019
PubMed
Abstract

Insights

This study introduces a computational model integrating molecular and functional data to predict personalized cancer drug combinations. This approach offers new treatment options for advanced cancer patients lacking effective therapies.

Area of Science:

  • Oncology
  • Computational Biology
  • Genomic Medicine

Background:

  • Advanced cancer patients often exhaust standard treatments and lack actionable genomic insights.
  • There is a critical need for evidence-based therapy selection when conventional approaches fail.

Purpose of the Study:

  • To develop a computational modeling approach for personalized combination cancer therapy.
  • To integrate molecular sequencing and functional assay data for treatment prediction.

Main Methods:

  • Utilized murine models of alveolar rhabdomyosarcoma for drug screening and sequencing.
  • Applied computational modeling to identify synergistic and resistance-abrogating drug combinations.
  • Validated predicted combinations in vitro and in vivo using allograft, xenograft, and cell regrowth assays.

Main Results:

  • Successfully predicted synergistic two-drug combinations in a murine model, validated in vivo.
  • Identified a heterogeneity-consensus combination for epithelioid sarcoma, effective across tumor regions and validated in a xenograft model.
  • Discovered a common resistance-abrogating two-drug combination for undifferentiated pleomorphic sarcoma in human and canine models, validated in vitro.

Conclusions:

  • Proof-of-concept studies demonstrate the utility of an integrative functional approach for personalized combination therapy.
  • This method provides viable treatment predictions for high-risk cancer patients lacking clinical options or actionable genomic data.

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