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ESMO recommendations on the standard methods to detect NTRK fusions in daily practice and clinical research
C Marchiò1, M Scaltriti2, M Ladanyi3
1Department of Medical Sciences, University of Turin, Turin; Division of Pathology, Candiolo Cancer Institute, FPO-IRCCS, Candiolo, Italy.
Background:
NTRK1, NTRK2 and NTRK3 fusions are present in a plethora of malignancies across different histologies. These fusions represent the most frequent mechanism of oncogenic activation of these receptor tyrosine kinases, and biomarkers for the use of TRK small molecule inhibitors. Given the varying frequency of NTRK1/2/3 fusions, crucial to the administration of NTRK inhibitors is the development of optimal approaches for the detection of human cancers harbouring activating NTRK1/2/3 fusion genes.
Materials And Methods:
Experts from several Institutions were recruited by the European Society for Medical Oncology (ESMO) Translational Research and Precision Medicine Working Group (TR and PM WG) to review the available methods for the detection of NTRK gene fusions, their potential applications, and strategies for the implementation of a rational approach for the detection of NTRK1/2/3 fusion genes in human malignancies. A consensus on the most reasonable strategy to adopt when screening for NTRK fusions in oncologic patients was sought, and further reviewed and approved by the ESMO TR and PM WG and the ESMO leadership.
Results:
The main techniques employed for NTRK fusion gene detection include immunohistochemistry, fluorescence in situ hybridization (FISH), RT-PCR, and both RNA-based and DNA-based next generation sequencing (NGS). Each technique has advantages and limitations, and the choice of assays for screening and final diagnosis should also take into account the resources and clinical context.
Conclusion:
In tumours where NTRK fusions are highly recurrent, FISH, RT-PCR or RNA-based sequencing panels can be used as confirmatory techniques, whereas in the scenario of testing an unselected population where NTRK1/2/3 fusions are uncommon, either front-line sequencing (preferentially RNA-sequencing) or screening by immunohistochemistry followed by sequencing of positive cases should be pursued.
Insights
Detecting NTRK gene fusions is crucial for TRK inhibitor therapy. This review outlines optimal detection strategies for NTRK1/2/3 fusions in various cancers, guiding clinical decisions.
Area of Science:
- Oncology
- Molecular Diagnostics
- Precision Medicine
Background:
- NTRK1, NTRK2, and NTRK3 gene fusions are oncogenic drivers in many cancers.
- These fusions are key biomarkers for TRK inhibitor therapy.
- Optimal detection methods are vital for effective patient treatment.
Purpose of the Study:
- To review and establish consensus on the best methods for detecting NTRK gene fusions.
- To guide the implementation of NTRK fusion detection strategies in clinical practice.
- To ensure appropriate use of TRK inhibitors.
Main Methods:
- A European Society for Medical Oncology (ESMO) working group convened experts to review detection techniques.
- Methods evaluated included immunohistochemistry, FISH, RT-PCR, and NGS (RNA and DNA-based).
- Consensus was reached on rational approaches for screening and diagnosis.
Main Results:
- Various techniques (IHC, FISH, RT-PCR, NGS) have distinct advantages and limitations.
- The choice of assay depends on clinical context and available resources.
- RNA-based NGS is preferred for unselected populations or as a front-line approach.
Conclusions:
- Recommended strategies vary based on NTRK fusion prevalence in specific tumor types.
- For recurrent fusions, FISH, RT-PCR, or RNA-sequencing are suitable confirmatory tests.
- For unselected populations, front-line RNA-sequencing or IHC followed by sequencing is advised.
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