RNA Based Approaches to Profile Oncogenic Pathways From Low Quantity Samples to Drive Precision Oncology Strategies

Anja van de Stolpe1, Wim Verhaegh2, Jean-Yves Blay3,4

  • 1Philips MPDx, Eindhoven, Netherlands.

Frontiers in Genetics
|February 22, 2021
PubMed

Insights

A novel mRNA-based diagnostic assay, OncoSignal, measures cancer pathway activity to guide precision medicine. This assay complements genomic analysis for predicting treatment response and patient prognosis.

Area of Science:

  • Molecular oncology and diagnostics
  • Cancer signaling pathway analysis
  • Precision medicine

Background:

  • Precision cancer treatment relies on identifying active tumor signaling pathways for optimal targeted therapy selection.
  • Current mutation-based treatments benefit only a subset of patients due to drug resistance mechanisms.
  • Phenotypic protein-based assays are challenging for multiplexing on routine pathology samples.

Purpose of the Study:

  • To validate and apply a new knowledge-based mRNA assay platform (OncoSignal) for simultaneous, quantitative measurement of signaling pathway activity.
  • To enable high-resolution analysis in various tissue samples, including circulating tumor cells and small specimen quantities.
  • To complement genomic analyses by providing insights into functional pathway activation.

Main Methods:

  • Utilized mRNA levels of validated direct target genes as indicators of functional pathway activation.
  • Developed a Bayesian network model, calibrated on known pathway statuses, to calculate pathway activity scores.
  • Translated the approach to RT-qPCR assays for broad clinical diagnostic applications.

Main Results:

  • Validated the OncoSignal platform for measuring signaling pathway activity across diverse cancer types and normal controls.
  • Demonstrated utility in characterizing tumor microenvironment cell types, including immune cells (distinguishing activated vs. immunotolerant states).
  • Showcased OncoSignal's ability to provide information on cancer-driving pathways not readily obtainable from DNA sequencing.

Conclusions:

  • OncoSignal assays provide crucial information complementary to genomic analysis for advancing precision medicine in oncology.
  • Applications include predicting therapy response/resistance, monitoring efficacy, assessing prognosis, and measuring circulating tumor cells.
  • The platform supports preclinical research for a better understanding of cancer biology and development of novel therapies.