Molecular Tumor Board as a Clinical Tool for Converting Molecular Data Into Real-World Patient Care

Andrea Vingiani1,2, Luca Agnelli1,3, Matteo Duca3

  • 1Department of Diagnostic Innovation, Fondazione IRCCS Istituto Nazionale dei Tumori, Milan, Italy.

PubMed
Abstract

Insights

Molecular Tumor Boards (MTB) facilitate precision oncology by matching next-generation sequencing (NGS) data with targeted treatments. Real-world data show larger NGS panels improve actionable target detection, enhancing personalized cancer care.

Area of Science:

  • Oncology
  • Genomics
  • Precision Medicine

Background:

  • Next-generation sequencing (NGS) is transforming oncology, shifting focus from histology to molecular targets for personalized treatment.
  • Approved cancer drugs increasingly rely on specific biomarkers, necessitating tools for integrating molecular data into clinical practice.

Purpose of the Study:

  • To evaluate the utility of a Molecular Tumor Board (MTB) in implementing a mutational model for precision oncology.
  • To assess the effectiveness of matching next-generation sequencing (NGS) data with personalized treatments through a multidisciplinary team approach.

Main Methods:

  • An institutional Molecular Tumor Board (MTB) convened weekly via teleconference to discuss molecular data and therapeutic options for advanced/metastatic solid tumors.
  • Evaluation of molecular data from 1,996 patients between May 2020 and October 2021.

Main Results:

  • Over 10,000 variants were identified, with 43.2% deemed functionally relevant (pathogenic or likely pathogenic).
  • 711 patients (35.6%) were identified as potentially eligible for targeted therapy based on actionable variants.
  • Larger NGS panels (>50 genes) were more effective than smaller panels (≤50 genes) in identifying actionable targets.

Conclusions:

  • Molecular Tumor Boards (MTBs) are valuable for integrating NGS data into clinical practice, facilitating precision oncology.
  • Real-world data support the role of MTBs in matching molecular alterations with targeted therapies for personalized cancer treatment.