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Updated: Apr 28, 2026

Isolation, Enrichment, and Maintenance of Medulloblastoma Stem Cells
Published on: September 1, 2010
Overcoming multiple drug resistance mechanisms in medulloblastoma
Ramadhan T Othman, Ioanna Kimishi, Tracey D Bradshaw
1Children's Brain Tumour Research Centre, Division of Child Health, Obstetrics and Gynaecology, School of Medicine, University of Nottingham, QMC, Nottingham NG7 2UH, UK. beth.coyle@nottingham.ac.uk.
Introduction:
Medulloblastoma (MB) is the most common malignant paediatric brain tumour. Recurrence and progression of disease occurs in 15-20% of standard risk and 30-40% of high risk patients. We analysed whether circumvention of chemoresistance pathways (drug export, DNA repair and apoptotic inhibition) can restore chemotherapeutic efficacy in a panel of MB cell lines.
Results:
We demonstrate, by immunohistochemistry in patient tissue microarrays, that ABCB1 is expressed in 43% of tumours and is significantly associated with high-risk. We show that ABCB1, O6-methylguanine-DNA-methyltransferase (MGMT) and BCL2 family members are differentially expressed (by quantitative reverse transcription polymerase chain reaction, Western blotting and flow cytometry) in MB cell lines. Based on these findings, each pathway was then inhibited or circumvented and cell survival assessed using clonogenic assays. Inhibition of ABCB1 using vardenafil or verapamil resulted in a significant increase in sensitivity to etoposide in ABCB1-expressing MB cell lines. Sensitivity to temozolomide (TMZ) was MGMT-dependent, but two novel imidazotetrazine derivatives (N-3 sulfoxide and N-3 propargyl TMZ analogues) demonstrated ≥7 fold and ≥3 fold more potent cytotoxicity respectively compared to TMZ in MGMT-expressing MB cell lines. Activity of the BAD mimetic ABT-737 was BCL2A1 and ABCB1 dependent, whereas the pan-BCL2 inhibitor obatoclax was effective as a single cytotoxic agent irrespective of MCL1, BCL2, BCL2A1, or ABCB1 expression.
Conclusions:
ABCB1 is associated with high-risk MB; hence, inhibition of ABCB1 by vardenafil may represent a valid approach in these patients. Imidazotetrazine analogues of TMZ and the BH3 mimetic obatoclax are promising clinical candidates in drug resistant MB tumours expressing MGMT and BCL2 anti-apoptotic members respectively.
Insights
Circumventing chemoresistance pathways like ABCB1, MGMT, and BCL2 can restore chemotherapy efficacy in medulloblastoma. Novel drug analogues and inhibitors show promise for treating drug-resistant paediatric brain tumours.
Area of Science:
- Oncology
- Paediatric Neuro-oncology
- Cancer Therapeutics
Background:
- Medulloblastoma (MB) is the most common malignant paediatric brain tumour.
- 15-20% of standard-risk and 30-40% of high-risk MB patients experience recurrence or progression.
- Chemoresistance pathways, including drug export, DNA repair, and apoptotic inhibition, contribute to treatment failure.
Purpose of the Study:
- To investigate whether circumventing chemoresistance pathways can restore chemotherapeutic efficacy in medulloblastoma.
- To identify potential therapeutic targets and novel drug candidates for drug-resistant MB.
Main Methods:
- Immunohistochemistry on patient tissue microarrays to assess ABCB1 expression.
- Quantitative reverse transcription polymerase chain reaction, Western blotting, and flow cytometry to analyze gene and protein expression (ABCB1, MGMT, BCL2 family).
- Clonogenic assays to evaluate cell survival after inhibiting or circumventing chemoresistance pathways.
Main Results:
- ABCB1 expression was found in 43% of tumours and associated with high-risk MB.
- Inhibition of ABCB1 with vardenafil or verapamil increased sensitivity to etoposide in relevant cell lines.
- Novel imidazotetrazine derivatives showed significantly greater cytotoxicity than temozolomide (TMZ) in MGMT-expressing cells.
- The BH3 mimetic obatoclax demonstrated efficacy as a single agent, irrespective of BCL2 family or ABCB1 expression.
Conclusions:
- ABCB1 inhibition, potentially with vardenafil, may benefit high-risk MB patients.
- Imidazotetrazine analogues of TMZ and the BH3 mimetic obatoclax are promising candidates for drug-resistant MB expressing MGMT and BCL2 anti-apoptotic members, respectively.
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