Evaluating Targeted Next-Generation Sequencing Assays and Reference Materials for NTRK Fusion Detection

Christina Bormann Chung1, Jeeyun Lee2, Marc Barritault3

  • 1Genentech Research and Early Development, Genentech, Inc., South San Francisco, California.

Insights

Identifying neurotrophic tyrosine receptor kinase (NTRK) fusions is crucial for targeted cancer therapy. This study evaluated four RNA-based next-generation sequencing (NGS) assays, finding all detected NTRK fusions with 100% specificity in clinical samples.

Area of Science:

  • Oncology
  • Molecular Diagnostics
  • Genomics

Background:

  • Neurotrophic tyrosine receptor kinase (NTRK) fusions are rare but actionable oncogenic drivers in solid tumors, occurring in approximately 0.3% of cases.
  • Accurate identification of NTRK fusion-positive tumors is essential for patient eligibility for tropomyosin receptor kinase inhibitor therapy.
  • The current landscape of NTRK testing, particularly using next-generation sequencing (NGS), is fragmented with variable assay availability and performance.

Purpose of the Study:

  • To evaluate and compare the analytical and clinical performance of four commonly available RNA-based NGS assays for NTRK fusion detection.
  • To provide insights into the strengths and limitations of these assays to guide physicians and pathologists in selecting optimal testing methods.

Main Methods:

  • Evaluation of four RNA-based NGS assays: Archer's FusionPlex Lung panel (AFL), Illumina's TruSight Oncology 500 (TSO500), and Thermo Fisher's Oncomine Precision Assay and Oncomine Focus Assay (OFA).
  • Experiments utilized contrived samples (cell lines, reference material), NTRK fusion-negative clinical samples, and NTRK fusion-positive clinical samples.
  • Assessment of analytical sensitivity (limit of detection) and specificity, alongside quality control (QC) pass rates.

Main Results:

  • The estimated limit of detection varied significantly across assays, ranging from approximately 1-28 copies (OFA, Oncomine Precision) to 30-620 copies (AFL).
  • All four assays demonstrated 100% specificity for NTRK fusion detection.
  • Quality control pass rates were variable: AFL (43%), TSO500 (77%), and OFA (83%).
  • All assays achieved 100% detection rate for NTRK fusions in quality control-validated clinical samples.

Conclusions:

  • All evaluated RNA-based NGS assays can accurately detect NTRK fusions in clinical samples, showing 100% specificity.
  • Assay performance, particularly in terms of limit of detection and QC pass rates, varies, necessitating careful selection based on clinical needs.
  • This comparative analysis aids in informed decision-making for NTRK fusion testing to optimize patient identification for targeted therapies.

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