Abstract
Treatment decisions in IDH-mutant oligodendrogliomas are shaped by tumor aggressiveness, underscoring the need for objective grading of these malignant brain tumors. We collect 302 primary and recurrent resections from oligodendrogliomas and perform Ki-67 staining, proteomics, and DNA methylation profiling. During tumor progression, DNA methylation of oligodendrogliomas changes along a continuum. This continuum is linked to increased epigenetic aging, methylation of transcription factors and Ki-67+ cell density, and large-scale DNA demethylation. Demethylation correlates with CpG flanking sequences preferred by TET enzymes. We confirm these findings in previously profiled astrocytomas, indicating IDH-mutant gliomas progress along a shared epigenetic axis. We develop an objective DNA methylation-based prognostic continuous grading coefficient (CGC ψ) that captures these changes and outperforms the World Health Organization (WHO) grading for oligodendrogliomas. Our findings underscore the potential of DNA methylation-based grading to more accurately reflect tumor biology and inform clinical decision-making in IDH-mutant gliomas.
| Original language | English |
|---|---|
| Article number | 102682 |
| Journal | Cell Reports Medicine |
| Volume | 7 |
| Issue number | 3 |
| DOIs | |
| Publication status | Published - 17 Mar 2026 |
Keywords
- DNA-methylation
- IDH-mutant glioma
- TET
- continuous grading coefficient
- oligodendroglioma
- sequence context
- tumor evolution
- Prognosis
- Proto-Oncogene Proteins/genetics
- Humans
- Middle Aged
- Epigenesis, Genetic
- CpG Islands/genetics
- DNA Methylation/genetics
- Male
- Isocitrate Dehydrogenase/genetics
- Neoplasm Grading
- Glioma/genetics
- Female
- Adult
- Mutation/genetics
- DNA Demethylation
- Brain Neoplasms/genetics
- Disease Progression
- Oligodendroglioma/genetics
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