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Cisplatin associated with LY294002 increases cytotoxicity and induces changes in transcript profiles of glioblastoma
P O Carminati1, F S Donaires, M M Marques
1Department of Genetics, Faculty of Medicine of Ribeirão Preto, University of São Paulo (USP), Ribeirão Preto, SP, Brazil.
Abstract:
Glioblastoma, one of the deadliest forms of brain tumor, responds poorly to available therapies. This highlights the intense search for new treatment approaches, and an emerging strategy is based on molecular targets. In the present work, we aimed to study whether glioblastoma cells can be sensitized by cisplatin combined with LY294002 (LY), which is an inhibitor of PI3K-related family (ATM, ATR, DNA-PK). We observed that cisplatin caused a pronounced reduction in cell proliferation in U343 and U87 cells, and LY significantly increased the cytotoxic effects caused by cisplatin under these conditions. Differently of U343, U87 cells did not show a significant induction of apoptosis. The phosphorylation level of damage response proteins was analyzed after drug-treatment either with/without LY. The presence of γH2AX foci and phosphorylation of TP53(ser15) and CHK1(ser317) were shown in U343 cells, compatible with cisplatin-induced DNA damage. Similarly, the level of ATR phosphorylation (ser428) was also increased (24 h). The transcript expression profiles of drug-treated compared with untreated U343 cells showed significant changes in the expression of 108 genes, while 274 genes were modulated by cisplatin+LY. The combined treatment caused a high proportion of down-regulated genes, which were mainly involved with DNA repair, cell death and cell cycle control/proliferation, metabolism, transcription regulation and cellular adhesion. Altogether, the present results indicate that most probably, PI3K-related kinases may play an important role in the resistance of glioblastomas cells to cisplatin, and the combination with LY can, at least in part, sensitize these cells to drug treatment.
Insights
Combining cisplatin with LY294002 (LY), a PI3K-related kinase inhibitor, enhances glioblastoma cell sensitivity to chemotherapy. This combination targets DNA repair and cell cycle pathways, offering a potential new strategy for treating this deadly brain tumor.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Glioblastoma is an aggressive brain tumor with limited treatment options.
- Developing novel therapeutic strategies targeting molecular pathways is crucial.
- PI3K-related kinases are implicated in cellular responses to DNA damage.
Purpose of the Study:
- To investigate the synergistic effect of cisplatin and LY294002 (LY) on glioblastoma cells.
- To explore the role of PI3K-related kinases in glioblastoma resistance to cisplatin.
Main Methods:
- Treatment of U343 and U87 glioblastoma cell lines with cisplatin alone and in combination with LY.
- Assessment of cell proliferation, apoptosis, and DNA damage response protein phosphorylation (γH2AX, p53, CHK1, ATR).
- Analysis of gene expression profiles using transcriptomics.
Main Results:
- Cisplatin reduced glioblastoma cell proliferation; LY significantly enhanced this cytotoxic effect.
- Cisplatin induced DNA damage markers in U343 cells, with increased ATR phosphorylation.
- Combined treatment modulated genes involved in DNA repair, cell death, and cell cycle control, with a notable proportion of downregulated genes.
Conclusions:
- PI3K-related kinases likely contribute to glioblastoma cell resistance to cisplatin.
- The combination of cisplatin with LY294002 can sensitize glioblastoma cells to chemotherapy.
- This combination therapy presents a promising avenue for improving glioblastoma treatment outcomes.
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