Abstract
Pediatric high-grade glioma (pHGG) is a devastating group of childhood cancers associated with poor outcomes. Traditionally, diagnosis was based on histologic and immunohistochemical characteristics, including high mitotic activity, presence of necrosis, and presence of glial cell markers (e.g., GFAP). With advances in molecular tumor profiling, these tumors have been recategorized based on specific molecular findings that better lend themselves to prediction of treatment response and prognosis. pHGG is now categorized into four subtypes: H3K27-altered, H3G34-mutant, H3/IDH-WT, and infant-type high-grade glioma (iHGG). Molecular profiling has not only increased the specificity of diagnosis but also improved prognostication. Additionally, these molecular findings provide novel targets for individual tumor-directed therapy. While these therapies are largely still under investigation, continued investigation of distinct molecular markers in these tumors is imperative to extending event-free survival (EFS) and overall survival (OS) for patients with pHGG.
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Vallee, E., Steller, A., Childress, A., Koch, A., & Raskin, S. (2025, September 1). The Current Landscape of Molecular Pathology for the Diagnosis and Treatment of Pediatric High-Grade Glioma. Journal of Molecular Pathology. Multidisciplinary Digital Publishing Institute (MDPI). https://doi.org/10.3390/jmp6030017
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