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Frequent CD30 Expression in an Emerging Group of Mesenchymal Tumors With NTRK, BRAF, RAF1, or RET Fusions
Naoki Kojima1, Taisuke Mori2, Toru Motoi3
1Department of Diagnostic Pathology, National Cancer Center Hospital, Tokyo, Japan.
Abstract:
Neurotrophic tyrosine receptor kinase (NTRK) fusions define infantile fibrosarcomas in young children and NTRK-rearranged spindle-cell tumors in older children and adults, which share characteristic spindle-cell histology and CD34 or S100 protein expression. Similar phenotypes were identified in tumors with BRAF, RAF1, or RET fusions, suggesting a unifying concept of "spindle-cell tumors with kinase gene fusions." In this study, we investigated CD30 expression in 38 mesenchymal tumors with kinase gene fusions using immunohistochemistry. CD30 was expressed in 15 of 22 NTRK-rearranged tumors and 12 of 16 tumors with BRAF, RAF1, or RET fusions. In total, CD30 was expressed in 27 of the 38 tumors (71%), with >50% CD30-positive cells in 21 tumors and predominantly moderate or strong staining in 24 tumors. CD34 and S100 protein were also expressed in 71% and 69% of the tumors, respectively. In contrast, CD30 was significantly less frequently expressed in other mesenchymal tumor types that histologically mimic kinase fusion-positive tumors (9 of 150 tumors, 6%), of which none showed >50% or predominantly strong staining. Among these mimicking tumors, malignant peripheral nerve sheath tumors occasionally (30%) expressed CD30, albeit in a weak focal manner in most positive cases. CD30 was also expressed in 3 of 15 separately analyzed ALK- or ROS1-positive inflammatory myofibroblastic tumors. Frequent expression of CD30 enhances the shared phenotype of spindle-cell tumors with NTRK and other kinase gene fusions, and its sensitivity seems similar to that of CD34 and S100 protein. Although moderate sensitivity hampers its use as a screening tool, CD30 expression could be valuable to rapidly identify high-yield candidates for molecular workup, particularly in communities that lack routine genetic analysis and/or for tumors with BRAF, RAF1, or RET fusions.
Insights
CD30 is frequently expressed in spindle-cell tumors with kinase gene fusions, including NTRK, BRAF, RAF1, and RET fusions. This finding aids in identifying tumors for genetic analysis, especially when routine testing is unavailable.
Area of Science:
- Oncology
- Molecular Pathology
- Cancer Genetics
Background:
- Neurotrophic tyrosine receptor kinase (NTRK) fusions characterize infantile fibrosarcomas and NTRK-rearranged spindle-cell tumors.
- Spindle-cell tumors with BRAF, RAF1, or RET fusions share similar phenotypes, suggesting a unifying concept of
- spindle-cell tumors with kinase gene fusions.
Purpose of the Study:
- To investigate CD30 expression in mesenchymal tumors harboring kinase gene fusions.
- To assess the utility of CD30 as a potential biomarker for identifying these tumors.
Main Methods:
- Immunohistochemistry was used to evaluate CD30 expression in 38 mesenchymal tumors with known kinase gene fusions.
- CD30 expression was compared to CD34 and S100 protein expression.
- CD30 expression was also analyzed in histologically similar mesenchymal tumors lacking kinase fusions and in ALK/ROS1-positive inflammatory myofibroblastic tumors.
Main Results:
- CD30 was expressed in 71% (27/38) of kinase fusion-positive tumors, with predominantly moderate or strong staining in 24 tumors.
- CD30 expression in these tumors was comparable to CD34 (71%) and S100 protein (69%) expression.
- CD30 was significantly less frequent (6%) and weaker in mimicking tumor types, with the exception of some malignant peripheral nerve sheath tumors.
Conclusions:
- Frequent CD30 expression is a shared feature of spindle-cell tumors with NTRK and other kinase gene fusions.
- While not a perfect screening tool due to moderate sensitivity, CD30 can help identify candidates for molecular testing.
- CD30 is particularly valuable in resource-limited settings or for tumors with BRAF, RAF1, or RET fusions.
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