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Targeting glioma cells by antineoplastic activity of reversine
Camila Hirakata1, Keli Lima1, Bruna Oliveira De Almeida1
1Department of Pharmacology, Institute of Biomedical Sciences, University of São Paulo, São Paulo, CEP 05508-900, Brazil.
Abstract:
Gliomas are the most common type of primary central nervous system tumors and despite great advances in understanding the molecular basis of the disease very few new therapies have been developed. Reversine, a synthetic purine analog, is a multikinase inhibitor that targets aurora kinase A (AURKA) and aurora kinase B (AURKB). In gliomas, a high expression of AURKA or AURKB is associated with a malignant phenotype and a poor prognosis. The present study investigated reversine-related cellular and molecular antiglioma effects in HOG, T98G and U251MG cell lines. Gene and protein expression were assessed by reverse transcription-quantitative PCR and western blotting, respectively. For functional assays, human glioma cell lines (HOG, T98G and U251MG) were exposed to increasing concentrations of reversine (0.4-50 µM) and subjected to various cellular and molecular assays. Reversine reduced the viability and clonogenicity in a dose- and/or time-dependent manner in all glioma cells, with HOG (high AURKB-expression) and T98G (high AURKA-expression) cells being more sensitive compared with U251MG cells (low AURKA- and AURKB-expression). Notably, HOG cells presented higher levels of polyploidy, while T98G presented multiple mitotic spindles, which is consistent with the main regulatory functions of AURKB and AURKA, respectively. In molecular assays, reversine reduced AURKA and/or AURKB expression/activity and increased DNA damage and apoptosis markers, but autophagy-related proteins were not modulated. In conclusion, reversine potently induced mitotic catastrophe and apoptosis in glioma cells and higher basal levels of aurora kinases and genes responsive to DNA damage and may predict improved antiglioma responses to the drug. Reversine may be a potential novel drug in the antineoplastic arsenal against gliomas.
Insights
Reversine, a novel drug, effectively targets glioma cells by inducing apoptosis and mitotic catastrophe. Glioma cells with higher aurora kinase levels showed increased sensitivity to reversine, suggesting its potential as a new cancer therapy.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Gliomas are primary central nervous system tumors with limited therapeutic options despite advances in molecular understanding.
- High expression of aurora kinase A (AURKA) or aurora kinase B (AURKB) correlates with poor prognosis in gliomas.
- Reversine is a synthetic purine analog and multikinase inhibitor targeting AURKA and AURKB.
Purpose of the Study:
- To investigate the anti-glioma effects of reversine on cellular and molecular levels.
- To assess the sensitivity of different glioma cell lines to reversine based on aurora kinase expression.
- To explore the mechanisms by which reversine exerts its anti-glioma activity.
Main Methods:
- Utilized human glioma cell lines (HOG, T98G, U251MG) exposed to varying concentrations of reversine.
- Assessed gene and protein expression using reverse transcription-quantitative PCR and western blotting.
- Performed functional assays including viability, clonogenicity, polyploidy, mitotic spindle analysis, DNA damage, and apoptosis marker assessment.
Main Results:
- Reversine dose-dependently reduced glioma cell viability and clonogenicity.
- HOG (high AURKB) and T98G (high AURKA) cells were more sensitive to reversine than U251MG cells (low AURKA/AURKB).
- Reversine induced polyploidy and multiple mitotic spindles, reduced AURKA/AURKB expression/activity, increased DNA damage and apoptosis markers, but did not affect autophagy.
Conclusions:
- Reversine effectively induces mitotic catastrophe and apoptosis in glioma cells.
- Higher basal levels of aurora kinases and DNA damage-responsive genes may predict better responses to reversine.
- Reversine shows potential as a novel therapeutic agent against gliomas.
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