Vollständiger Abstract
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Abstract Treatment resistance and recurrence continue to define the clinical landscape of glioblastoma (GBM), yet their study is limited by traditional in vitro frameworks that fail to capture long-term treatment dynamics and tumor evolution. Here we present GliaMimic, a longitudinal in vitro platform incorporating irradiation and multi-dose temozolomide (TMZ). Using patient-derived organoids (PDOs) and cell line-derived spheroids, tumor progression and treatment response were monitored non-invasively over four weeks. Substantial declines in metabolic activity and viability at clinically relevant TMZ concentrations (≤ 10 µM) emerge only after prolonged exposure, whereas short-term assays captured effects only at supraphysiological doses. Notably, PDOs, patient-derived spheroids, and their cell line-derived counterparts exhibited distinct patterns of treatment response and tumor progression, underscoring the importance of model selection in preclinical studies. Following treatment cessation, the platform captured distinct, patient-specific post-treatment tumor behaviors with persistent viable and metabolically active populations across all models with more pronounced changes in PDOs. By moving beyond static molecular diagnostics, GliaMimic provides a longitudinal in vitro treatment evaluation platform for preclinical testing.
Bibliografischer Nachweis
Publikationsdaten
- Autor:innen
- Selina Camenisch, Luisa Bell, Nadine Stokar-Regenscheit, Natalia Vélez Char, Wolfram Jochum, Simon Heinze, Anna Maria Zeitlberger, Thomas Hundsberger, Marian Neidert, Peter Wick, Vanesa Ayala-Nunez
- Quelle
- Journal of Experimental & Clinical Cancer Research
- Publikation
- 2026-01-01
- Band / Ausgabe
- Nicht angegeben
- Seiten
- Nicht angegeben
- ISSN / ISBN
- 1756-9966
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Zitierfähiger Nachweis
Selina Camenisch, Luisa Bell, Nadine Stokar-Regenscheit, Natalia Vélez Char, Wolfram Jochum, Simon Heinze, Anna Maria Zeitlberger, Thomas Hundsberger, Marian Neidert, Peter Wick, Vanesa Ayala-Nunez (2026). Gliamimic: a longitudinal, multimodal in vitro platform for evaluating glioblastoma treatment response and post-treatment tumor progression in patient-derived organoids or spheroids. Journal of Experimental & Clinical Cancer Research. https://doi.org/10.1186/s13046-026-03816-1
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