Cost-Efficient Detection of NTRK1/2/3 Gene Fusions: Single-Center Analysis of 8075 Tumor Samples

Aleksandr A Romanko1, Rimma S Mulkidjan1, Vladislav I Tiurin1

  • 1Department of Tumor Growth Biology, N.N. Petrov Institute of Oncology, 197758 St.-Petersburg, Russia.

Insights

This study developed a cost-efficient diagnostic pipeline to detect NTRK gene fusions in tumors. The method analyzes 5'/3'-end expression imbalances, offering an alternative to conventional NTRK1-3 analysis.

Area of Science:

  • Oncology
  • Molecular Biology
  • Genetics

Background:

  • NTRK gene fusions can lead to increased kinase expression, driving oncogenesis.
  • Detecting these fusions is crucial for targeted cancer therapy.
  • Conventional methods for NTRK fusion detection can be complex and costly.

Purpose of the Study:

  • To develop and validate a cost-efficient diagnostic pipeline for detecting NTRK1, NTRK2, and NTRK3 gene fusions.
  • To analyze the frequency and spectrum of NTRK fusions across various tumor types.
  • To establish a reliable method for identifying NTRK rearrangements using expression imbalances.

Main Methods:

  • Analysis of 5'/3'-end expression imbalances in NTRK genes using real-time PCR on 8075 archival tumor specimens.
  • Identification of gene rearrangements via variant-specific PCR for common fusions and RNA-based next-generation sequencing (NGS) when necessary.
  • Manual dissection of tumor cells, DNA/RNA isolation, and cDNA synthesis were performed.

Main Results:

  • NTRK rearrangements were detected in 8.0% of pediatric tumors and 1.5% of adult non-lung malignancies.
  • The highest incidence was observed in pediatric sarcomas (17.9%) and microsatellite-unstable colorectal tumors (12.5%).
  • No NTRK imbalances were found in lung carcinomas with known driver alterations (EGFR/ALK/ROS1/RET/MET).

Conclusions:

  • A diagnostic pipeline analyzing 5'/3'-end expression imbalances effectively detects NTRK gene fusions.
  • This approach serves as a cost-efficient alternative to conventional NTRK1-3 analysis methods.
  • The study highlights the importance of NTRK fusion detection in specific cancer types, particularly pediatric malignancies and sarcomas.

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