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Method for Novel Anti-Cancer Drug Development using Tumor Explants of Surgical Specimens
Published on: July 29, 2011
Neural stem/progenitors and glioma stem-like cells have differential sensitivity to chemotherapy
Xing Gong1, Philip H Schwartz, Mark E Linskey
1Department of Neurology, UC Irvine School of Medicine, Orange, CA, USA.
Objectives:
New data suggest that glioma stem-like cells (GSCs) and neural stem/progenitor cells (NSCs) may share common origins. GSCs drive tumor proliferation and appear to be resistant to classic chemotherapy, while the effects of chemotherapy on NSCs are not well studied. As the role of NSCs in learning and memory is increasingly recognized, we need to identify drugs that reduce neurotoxicity but are still effective against glial tumors.
Methods:
We treated 3 human NSC cultures and multiple low- and high-grade GSC cultures with the commonly used agents temozolomide (TMZ) and cisplatin (CIS), and with 2 newer, promising drugs: the proteasome inhibitor bortezomib (BTZ) and the epidermal growth factor receptor tyrosine kinase inhibitor erlotinib (ERL). We measured cell survival, proliferation, cell death induction, and drug resistance markers.
Results:
TMZ decreased NSC viability, while minimally affecting GSCs. TMZ induced NSC death, which was partially compensated for by increased proliferation. CIS had similar effects. The NSC's sensitivity to TMZ and CIS correlated with low expression of the multidrug resistance gene ABCG2, but not of MGMT or MSH1/MLH2. BTZ caused an 80%decrease in GSCs, while minimally affecting NSCs. GSCs had lower proteasome levels and activity after BTZ treatment. ERL treatment also decreased GSC numbers, but not NSC viability, which correlated with low EGFR expression in NSCs compared to GSCs.
Conclusions:
Newer chemotherapy agents ERL and BTZ are effective against GSCs yet produce minimal effects on NSCs, while the older drugs TMZ and CIS are more toxic for NSCs than for GSCs. The identification and testing of more selective drugs is clearly warranted.
Insights
Newer chemotherapy drugs like erlotinib (ERL) and bortezomib (BTZ) effectively target glioma stem-like cells (GSCs) with less harm to neural stem/progenitor cells (NSCs). Older drugs show greater toxicity to NSCs.
Area of Science:
- Neuro-oncology
- Stem cell biology
- Pharmacology
Background:
- Glioma stem-like cells (GSCs) drive tumor growth and resist chemotherapy.
- Neural stem/progenitor cells (NSCs) are crucial for learning and memory.
- Understanding differential drug effects on GSCs and NSCs is vital for neurotoxicity mitigation.
Purpose of the Study:
- To compare the efficacy of temozolomide (TMZ), cisplatin (CIS), bortezomib (BTZ), and erlotinib (ERL) against GSCs and NSCs.
- To identify chemotherapeutic agents with reduced neurotoxicity.
- To evaluate drug resistance markers in GSCs and NSCs.
Main Methods:
- Human NSC and GSC cultures were treated with TMZ, CIS, BTZ, and ERL.
- Assessed were cell survival, proliferation, apoptosis, and drug resistance markers.
- Correlated drug sensitivity with expression of ABCG2, MGMT, MSH1/MLH2, and EGFR.
Main Results:
- TMZ and CIS reduced NSC viability and induced death, with minimal impact on GSCs.
- BTZ significantly decreased GSC numbers (80%) with minimal NSC effects.
- ERL reduced GSC numbers, correlating with low EGFR expression in NSCs.
- NSC sensitivity to TMZ/CIS correlated with low ABCG2 expression.
Conclusions:
- Newer agents ERL and BTZ demonstrate GSC-specific efficacy with lower NSC toxicity.
- Older agents TMZ and CIS exhibit greater toxicity to NSCs than GSCs.
- Development of more selective drugs for glioma treatment is warranted.
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