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Published on: July 5, 2019
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.
Abstract:
Neurotrophic tyrosine receptor kinase (NTRK1/2/3) fusions are oncogenic drivers in approximately 0.3% of solid tumors. High-quality testing to identify patients with NTRK fusion-positive tumors who could benefit from tropomyosin receptor kinase inhibitors is recommended, but the current NTRK testing landscape, including next-generation sequencing (NGS), is fragmented and availability of assays varies widely. The analytical and clinical performance of four commonly available RNA-based NGS assays, Archer's FusionPlex Lung panel (AFL), Illumina's TruSight Oncology 500 (TSO500), Thermo Fisher's Oncomine Precision Assay and Oncomine Focus Assay (OFA), were evaluated. Experiments were conducted using contrived samples [formalin-fixed, paraffin-embedded cell lines and SeraSeq formalin-fixed, paraffin-embedded reference material], NTRK fusion-negative clinical samples, and NTRK fusion-positive clinical samples, according to local assays. Estimated limit of detection varied across the four assays: 30 to 620 fusion copies for AFL (cell lines), versus approximately 30 to 290 copies for TSO500 and approximately 1 to 28 copies for OFA and Oncomine Precision Assay. All assays showed 100% specificity for NTRK fusions detection, but quality control pass rate was variable (AFL, 43%; TSO500, 77%; and OFA, 83%). The NTRK fusion detection rate in quality control-validated clinical samples was 100% for all assays. This comparison of the strengths and limitations of four RNA-based NGS assays will inform physicians and pathologists regarding optimal assay selection to identify patients with NTRK fusion-positive tumors.
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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