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Updated: Aug 24, 2025

The Clinical Application of Tumor Treating Fields Therapy in Glioblastoma
Published on: April 16, 2019
Anti-tumor effects of perampanel in malignant glioma cells
Juri Tatsuoka1, Emiko Sano1, Yuya Hanashima1
1Department of Neurological Surgery, Nihon University School of Medicine, Tokyo 173-8610, Japan.
Abstract:
Glioblastoma has a poor prognosis even after multimodal treatment, such as surgery, chemotherapy and radiation therapy. Patients with glioblastoma frequently develop epileptic seizures during the clinical course of the disease and often require antiepileptic drugs. Therefore, agents with both antiepileptic and antitumoral effects may be very useful for glioblastoma treatment. Perampanel, an α-amino-3-hydroxy-5-methyl-4-isoxazole propionic acid receptor antagonist, is an antiepileptic drug that is widely used for intractable epilepsy. The present study aimed to assess the potential antitumoral effects of perampanel using malignant glioma cell lines. The cell proliferation inhibitory effect was evaluated using six malignant glioma cell lines (A-172, AM-38, T98G, U-138MG, U-251MG and YH-13). A dose-dependent inhibitory effect of perampanel on cell viability was demonstrated; however, the sensitivity of cells to perampanel varied and further antitumoral effects were demonstrated in combination with temozolomide (TMZ) in certain malignant glioma cells. Furthermore, cell cycle distribution and apoptosis induction analyses were performed in T98G and U-251MG cells using a fluorescence activated cell sorter (FACS) and the expression levels of apoptosis-related proteins were evaluated using western blotting. No significant change was demonstrated in the proportions of cells in the G0/G1, S and G2/M phases under 1.0 µM perampanel treatment, whereas induction of apoptosis was demonstrated using FACS at 10 µM perampanel and western blotting at 1.0 µM perampanel in both glioma cell lines. Overexpression of SERPINE1 may be related to poor prognosis in patients with gliomas. The combination of 1.0 µM perampanel and 5.0 µM tiplaxtinin, a SERPINE1 inhibitor, demonstrated further reduced cell viability in perampanel-resistant U-138MG cells, which have high expression levels of SERPINE1. These results indicated that the antitumor effect of perampanel may not be expected for malignant gliomas with higher expression levels of SERPINE1. The findings of the present study suggested that the antiepileptic drug perampanel may also have an antitumor effect through the induction of apoptosis, which is increased when combined with TMZ in certain malignant glioma cells. These findings also suggested that SERPINE1 expression may be involved in perampanel susceptibility. These results may lead to new therapeutic strategies for malignant glioma.
Insights
The antiepileptic drug perampanel shows antitumor effects in malignant glioma cells by inducing apoptosis. Its efficacy may be enhanced with temozolomide (TMZ) and is influenced by SERPINE1 expression levels.
Area of Science:
- Neuro-oncology
- Pharmacology
- Molecular Biology
Background:
- Glioblastoma (GBM) has a poor prognosis despite aggressive multimodal treatment.
- Patients with GBM often experience seizures, necessitating antiepileptic drugs.
- Agents with dual antiepileptic and antitumoral properties are desirable for GBM treatment.
Purpose of the Study:
- To investigate the potential antitumor effects of perampanel, an antiepileptic drug, in malignant glioma cell lines.
- To evaluate the synergistic effects of perampanel in combination with temozolomide (TMZ).
- To explore the role of SERPINE1 expression in perampanel's antitumoral activity.
Main Methods:
- Assessed perampanel's effect on cell viability and proliferation across six malignant glioma cell lines.
- Conducted cell cycle distribution and apoptosis analyses using fluorescence-activated cell sorting (FACS).
- Evaluated apoptosis-related protein expression via western blotting and analyzed SERPINE1 inhibitor combination therapy.
Main Results:
- Perampanel demonstrated a dose-dependent inhibition of glioma cell viability, with varying sensitivity across cell lines.
- Apoptosis was induced by perampanel at higher concentrations (10 µM) and via western blotting at 1.0 µM.
- Combination therapy with TMZ showed enhanced antitumoral effects in certain cell lines.
- Perampanel efficacy was reduced in cells with high SERPINE1 expression, but combination with a SERPINE1 inhibitor (tiplaxtinin) improved viability in resistant cells.
Conclusions:
- Perampanel exhibits potential antitumor effects in malignant gliomas by inducing apoptosis.
- The combination of perampanel and TMZ may offer enhanced therapeutic benefits in specific glioma contexts.
- SERPINE1 expression levels appear to influence susceptibility to perampanel, suggesting it as a potential biomarker or therapeutic target.

