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NTRK Fusions Can Co-Occur With H3K27M Mutations and May Define Druggable Subclones Within Diffuse Midline Gliomas
Nathan A Dahl1,2,3, Andrew M Donson1,2, Bridget Sanford2
1From the Morgan Adams Foundation Pediatric Brain Tumor Research Program, Aurora, Colorado, USA.
Abstract:
Diffuse midline gliomas (DMGs) are incurable pediatric tumors with extraordinarily limited treatment options. Decades of clinical trials combining conventional chemotherapies with radiation therapy have failed to improve these outcomes, demonstrating the need to identify and validate druggable biologic targets within this disease. NTRK1/2/3 fusions are found in a broad range of pediatric cancers, including high-grade gliomas and a subset of DMGs. Phase 1/2 studies of TRK inhibitors have demonstrated good tolerability, effective CNS penetration, and promising objective responses across all patients with TRK fusion-positive cancers, but their use has not been explored in TRK fusion-positive DMG. Here, we report 3 cases of NTRK fusions co-occurring within H3K27M-positive pontine diffuse midline gliomas. We employ a combination of single-cell and bulk transcriptome sequencing from TRK fusion-positive DMG to describe the phenotypic consequences of this co-occurring alteration. We then use ex vivo short-culture assays to evaluate the potential response to TRK inhibition in this disease. Together, these data highlight the importance of routine molecular characterization of these highly aggressive tumors and identify a small subset of patients that may benefit from currently available targeted therapies.
Insights
Diffuse midline gliomas (DMGs) are aggressive pediatric tumors. NTRK fusions in DMGs may respond to TRK inhibitors, offering a new targeted therapy option.
Area of Science:
- Pediatric Oncology
- Molecular Biology
- Cancer Genomics
Background:
- Diffuse midline gliomas (DMGs) are aggressive pediatric brain tumors with poor prognoses.
- Current treatments, including chemotherapy and radiation, offer limited efficacy.
- Identifying novel therapeutic targets is crucial for improving outcomes in pediatric DMG.
Observation:
- NTRK fusions, present in various pediatric cancers, were identified co-occurring with H3K27M mutations in pontine DMGs.
- Transcriptome sequencing revealed the phenotypic impact of these co-occurring alterations.
- Ex vivo assays were used to assess the potential efficacy of TRK inhibitors.
Findings:
- This study reports three cases of NTRK fusions in H3K27M-positive pontine diffuse midline gliomas.
- TRK inhibitors demonstrated potential therapeutic responses in ex vivo models of DMG.
- TRK fusion-positive DMGs represent a distinct molecular subset.
Implications:
- Routine molecular profiling of pediatric DMGs is essential for identifying actionable targets.
- Targeted therapy with TRK inhibitors may benefit a subset of patients with NTRK fusion-positive DMGs.
- These findings open avenues for novel treatment strategies in pediatric brain tumors.
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