Related Experiment Video
Updated: Apr 23, 2026

Tumor Treating Field Therapy in Combination with Bevacizumab for the Treatment of Recurrent Glioblastoma
Published on: October 27, 2014
Bevacizumab in Japanese patients with malignant glioma: from basic research to clinical trial
Shingo Takano1, Eiichi Ishikawa1, Kei Nakai1
1Department of Neurosurgery, Faculty of Medicine, University of Tsukuba, Tsukuba, Japan.
Abstract:
An antiangiogenic approach is especially suitable for the treatment of malignant gliomas. Recently, two large clinical trials in newly diagnosed glioblastoma (the Avastin in Glioblastoma study and Radiation Therapy Oncology Group 0825 study) showed a 3- to 4-month prolongation of progression-free survival (PFS) with bevacizumab, but no significant effect on overall survival (OS). Japan is the first, and so far only, country to approve the use of bevacizumab in newly diagnosed glioblastoma in combination with radiotherapy and temozolomide chemotherapy. The drug is also approved for use as monotherapy for recurrent glioblastoma and certain other types of high-grade glioma after previous therapy. The effectiveness of bevacizumab on Japanese malignant glioma patients was reviewed. The Phase II clinical trial demonstrated that the PFS with bevacizumab alone was 34% at 6 months and 3.3 months at median for 32 patients with recurrent malignant gliomas. In the Avastin in Glioblastoma study, 44 Japanese patients were registered from Japan. PFS and OS for bevacizumab combined with standard temozolomide and radiotherapy were 12.2 months and 29.2 months at median, respectively, for the patients with newly diagnosed glioblastoma. PFS and OS tended to be longer for those treated with bevacizumab than for those not treated with the drug. In addition, biomarkers of bevacizumab effectiveness were investigated in Japanese patients. Vascular endothelial growth factor concentration, matrix metalloproteinase 9 activities in urine, and apparent diffusion coefficient values on magnetic resonance imaging may be biomarkers that predict patient prognosis. Finally, novel experiments for vascular endothelial growth factor antibody action were described; these include the induction of glioma cell apoptosis, an antibody treatment failure model, and a study of the synergistic effect with chemotherapeutic agents.
Insights
Bevacizumab offers a 3- to 4-month increase in progression-free survival for glioblastoma patients. Biomarkers like vascular endothelial growth factor may predict treatment effectiveness in Japanese patients.
Area of Science:
- Neuro-oncology
- Medical research
- Clinical trials
Background:
- Antiangiogenic therapy is a promising strategy for malignant gliomas.
- Bevacizumab has shown efficacy in extending progression-free survival (PFS) but not overall survival (OS) in glioblastoma clinical trials.
- Japan has approved bevacizumab for newly diagnosed glioblastoma and recurrent high-grade gliomas.
Purpose of the Study:
- To review the effectiveness of bevacizumab in Japanese malignant glioma patients.
- To investigate potential biomarkers for bevacizumab efficacy.
- To explore novel mechanisms of vascular endothelial growth factor antibody action.
Main Methods:
- Review of clinical trial data for bevacizumab in Japanese patients.
- Analysis of a Phase II trial for recurrent malignant gliomas.
- Inclusion of data from the Avastin in Glioblastoma study and Radiation Therapy Oncology Group 0825 study.
- Investigation of biomarkers including vascular endothelial growth factor, matrix metalloproteinase 9, and apparent diffusion coefficient.
Main Results:
- Bevacizumab monotherapy showed 34% PFS at 6 months and 3.3 months median PFS in recurrent gliomas.
- In newly diagnosed glioblastoma, bevacizumab combined with standard therapy resulted in median PFS of 12.2 months and median OS of 29.2 months.
- PFS and OS generally favored bevacizumab treatment.
- Potential biomarkers for prognosis were identified.
Conclusions:
- Bevacizumab demonstrates effectiveness in Japanese patients with malignant gliomas, particularly in extending PFS.
- Biomarkers such as vascular endothelial growth factor concentration may help predict patient outcomes.
- Further research into novel antibody actions and synergistic effects with chemotherapy is warranted.

