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Updated: Nov 1, 2025

Oncogenic Gene Fusion Detection Using Anchored Multiplex Polymerase Chain Reaction Followed by Next Generation Sequencing
Published on: July 5, 2019
NTRK fusions are extremely rare in bone tumours
Suk Wai Lam1, Inge H Briaire-de Bruijn1, Tom van Wezel1
1Department of Pathology, Leiden University Medical Centre, Leiden, The Netherlands.
Aims:
Because of the efficacy of tropomyosin receptor kinase (Trk) inhibitor therapy in tumours with rearrangements of the neurotrophic tyrosine kinase receptor genes (NRTK genes), there has been a surge in demand for NTRK fusion screening. To date, most studies involving mesenchymal tumours have focused on soft tissue tumours, and data on bone tumours are sparse. Hence, we aimed to explore the frequency of NTRK fusions in a large series of primary bone tumours.
Methods And Results:
Immunohistochemical expression of pan-Trk was successfully assessed in 354 primary bone tumours by the use of tissue microarrays. In a selection of positive cases, additional molecular analysis for NTRK fusions was performed with anchored multiplex polymerase chain reaction-based targeted next-generation sequencing. Positivity was found in 19 cases (5%), which comprised Ewing sarcoma (n = 6, 33%), osteosarcoma (n = 11, 13%), and giant-cell tumour of bone (n = 2, 3%). In all except one case, cytoplasmic staining was observed. Weak staining was most often observed (n = 13), although five cases showed moderate staining and one case showed focal strong staining. Molecular analysis was successful in six cases, all of which were negative for NTRK fusions.
Conclusion:
The likelihood of finding an NTRK fusion in bone tumours in clinical practice is extremely low. This may imply that, if more comprehensive large-scale molecular studies confirm this, routine predictive NTRK testing in bone tumour patients with advanced disease may be reconsidered.
Insights
The frequency of neurotrophic tyrosine kinase receptor (NTRK) gene fusions in primary bone tumours is very low. This study found NTRK fusions in only 5% of cases, suggesting routine predictive NTRK testing may not be necessary for bone tumour patients.
Area of Science:
- Oncology
- Molecular Pathology
- Genetics
Background:
- Tropomyosin receptor kinase (Trk) inhibitor therapy shows efficacy in tumours with neurotrophic tyrosine kinase receptor (NRTK) gene rearrangements.
- There is increasing demand for NTRK fusion screening due to treatment effectiveness.
- Research on NTRK fusions in bone tumours is limited compared to soft tissue tumours.
Purpose of the Study:
- To investigate the frequency of NTRK fusions in a large cohort of primary bone tumours.
- To assess the utility of pan-Trk immunohistochemistry as a screening tool for NTRK fusions in bone tumours.
Main Methods:
- Immunohistochemistry for pan-Trk expression was performed on 354 primary bone tumours using tissue microarrays.
- Anchored multiplex polymerase chain reaction-based targeted next-generation sequencing was used for molecular analysis of NTRK fusions in selected positive cases.
Main Results:
- Pan-Trk expression was detected in 19 cases (5%): Ewing sarcoma (33%), osteosarcoma (13%), and giant-cell tumour of bone (3%).
- Most positive cases showed cytoplasmic staining, predominantly weak.
- Molecular analysis confirmed NTRK fusions in none of the tested cases.
Conclusions:
- The prevalence of NTRK fusions in primary bone tumours is extremely low in clinical practice.
- Routine predictive NTRK testing for bone tumour patients with advanced disease may warrant reconsideration pending further large-scale molecular studies.
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