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Updated: Jul 19, 2025

A Rapid Screening Workflow to Identify Potential Combination Therapy for GBM using Patient-Derived Glioma Stem Cells
Published on: March 28, 2021
Combination drug screen targeting glioblastoma core vulnerabilities reveals pharmacological synergisms
Jérémy Ariey-Bonnet1, Raphael Berges2, Marie-Pierre Montero1
1Aix Marseille Université, Centre National de la Recherche Scientifique (CNRS), Institut National de la Santé et de la Recherche Médicale (INSERM), Institut Paoli Calmettes, Centre de Recherche en Cancérologie de Marseille (CRCM), Marseille, France.
Background:
Pharmacological synergisms are an attractive anticancer strategy. However, with more than 5000 approved-drugs and compounds in clinical development, identifying synergistic treatments represents a major challenge.
Methods:
High-throughput screening was combined with target deconvolution and functional genomics to reveal targetable vulnerabilities in glioblastoma. The role of the top gene hit was investigated by RNA interference, transcriptomics and immunohistochemistry in glioblastoma patient samples. Drug combination screen using a custom-made library of 88 compounds in association with six inhibitors of the identified glioblastoma vulnerabilities was performed to unveil pharmacological synergisms. Glioblastoma 3D spheroid, organotypic ex vivo and syngeneic orthotopic mouse models were used to validate synergistic treatments.
Findings:
Nine targetable vulnerabilities were identified in glioblastoma and the top gene hit RRM1 was validated as an independent prognostic factor. The associations of CHK1/MEK and AURKA/BET inhibitors were identified as the most potent amongst 528 tested pairwise drug combinations and their efficacy was validated in 3D spheroid models. The high synergism of AURKA/BET dual inhibition was confirmed in ex vivo and in vivo glioblastoma models, without detectable toxicity.
Interpretation:
Our work provides strong pre-clinical evidence of the efficacy of AURKA/BET inhibitor combination in glioblastoma and opens new therapeutic avenues for this unmet medical need. Besides, we established the proof-of-concept of a stepwise approach aiming at exploiting drug poly-pharmacology to unveil druggable cancer vulnerabilities and to fast-track the identification of synergistic combinations against refractory cancers.
Funding:
This study was funded by institutional grants and charities.
Insights
Identifying synergistic drug combinations for glioblastoma is challenging. This study found that combining AURKA and BET inhibitors shows potent efficacy and low toxicity in preclinical glioblastoma models.
Area of Science:
- Oncology
- Pharmacology
- Genomics
Background:
- Discovering synergistic anticancer drug combinations is crucial but challenging due to the vast number of available compounds.
- Glioblastoma remains a significant unmet medical need, necessitating novel therapeutic strategies.
Purpose of the Study:
- To identify targetable vulnerabilities in glioblastoma.
- To discover synergistic drug combinations for glioblastoma treatment.
- To validate the efficacy and safety of identified combinations in preclinical models.
Main Methods:
- Utilized high-throughput screening, target deconvolution, and functional genomics to identify glioblastoma vulnerabilities.
- Investigated the top gene hit, RRM1, using RNA interference, transcriptomics, and immunohistochemistry.
- Performed drug combination screening with a library of 88 compounds and 6 inhibitors, validating findings in 3D spheroid, ex vivo, and in vivo glioblastoma models.
Main Results:
- Identified nine targetable glioblastoma vulnerabilities, with RRM1 validated as an independent prognostic factor.
- Discovered CHK1/MEK and AURKA/BET inhibitor combinations as highly potent among 528 tested pairs.
- Confirmed significant synergism of AURKA/BET dual inhibition in ex vivo and in vivo glioblastoma models with no detectable toxicity.
Conclusions:
- The study provides strong preclinical evidence for the efficacy of AURKA/BET inhibitor combination therapy in glioblastoma.
- This research opens new therapeutic avenues for glioblastoma, an aggressive brain cancer.
- Established a stepwise approach to rapidly identify synergistic drug combinations for refractory cancers by leveraging drug poly-pharmacology.
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