Rare gliomas: standard treatment approaches and new target therapies

Francesco Bruno1, Alessia Pellerino, Edoardo Pronello

  • 1Division of Neuro-Oncology, Department of Neuroscience, University and City of Health and Science Hospital, Turin, Italy.

Current Opinion in Neurology
|September 24, 2025
PubMed
Abstract

Insights

Rare gliomas require new treatments beyond surgery and radiation. Molecularly targeted therapies, such as BRAF and NTRK inhibitors, show promise for these challenging central nervous system (CNS) tumours.

Area of Science:

  • Neuro-oncology
  • Molecular Pathology
  • Precision Medicine

Background:

  • Rare gliomas are a heterogeneous group of central nervous system (CNS) tumours with limited treatment options.
  • Conventional treatments include surgery and radiotherapy, but efficacy is often limited.
  • Advances in molecular profiling have identified actionable targets, necessitating a re-evaluation of treatment strategies.

Purpose of the Study:

  • To review current standard treatments for rare gliomas.
  • To describe recent advances in molecularly targeted therapies for rare gliomas.
  • To highlight the evolving treatment landscape driven by precision oncology.

Main Methods:

  • Literature review of current standard treatments.
  • Analysis of recent studies on molecularly targeted therapies.
  • Synthesis of findings on precision oncology approaches for rare CNS tumours.

Main Results:

  • Gross total surgical resection is the primary treatment for optimal tumour control.
  • Radiotherapy provides additional benefit for subtotal resection or recurrent disease.
  • Targeted therapies, including BRAF/MAPK, NTRK, FGFR, and mTOR inhibitors, demonstrate significant clinical activity in select rare glioma populations.

Conclusions:

  • Precision oncology is revolutionizing rare CNS tumour treatment.
  • Integrating targeted therapies guided by molecular tumour boards is crucial.
  • Future research should focus on optimizing treatment timing, combinations, resistance mechanisms, and developing novel biomarkers and liquid biopsy tools.

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