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Exploiting a metabolic vulnerability in brain tumour stem cells using a brain-penetrant drug with safe profile

GSE253362 Homo sapiens Expression profiling by high throughput sequencing 6 samples Submitted 2024/05/15 Platform GPL24676
Summary
Glioblastoma (GB) remains one of the most treatment refractory and fatal tumour in humans. GB contains a population of self-renewing stem cells, the brain tumour stem cells (BTSC) that are highly resistant to therapy and are at the origin of tumour relapse. Here, we report, for the first time, that mubritinib potently impairs stemness and growth of patient-derived BTSCs harboring different oncogenic mutations. Mechanistically, by employing bioenergetic assays and rescue experiments, we provide compelling evidence that mubritinib acts on complex I of the electron transport chain to impair BTSC stemness pathways, self-renewal and proliferation. Global gene expression profiling revealed that mubritinib alters the proliferative, neural-progenitor-like, and the cell-cycling state signatures. We employed in vivo pharmacokinetic assays to establish that mubritinib crosses the blood-brain barrier. Using preclinical models of patient-derived and syngeneic murine orthotopic xenografts, we demonstrated that mubritinib delays GB tumourigenesis, and expands lifespan of animals. Interestingly, its combination with radiotherapy offers survival advantage to animals. Strikingly, thorough toxicological and behavioral studies revealed that mubritinib does not induce any damage to normal cells and has a well-tolerated and safe profile. Our work warrants further exploration of this drug in in-human clinical trials for better management of GB tumours.
Published in
Exploiting metabolic vulnerability in glioblastoma using a brain-penetrant drug with a safe profile
Burban A, Tessier C, Larroquette M et al. · EMBO molecular medicine 2025 · PMID 39901019 · doi:10.1038/s44321-025-00195-6
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Also filed as BioProject PRJNA1065411 and SRA study SRP483994. Searching any of these in the dataset finder brings you back here.

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