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Updated: Mar 26, 2026

Tumor Treating Field Therapy in Combination with Bevacizumab for the Treatment of Recurrent Glioblastoma
Published on: October 27, 2014
Bevacizumab changes vascular structure and modulates the expression of angiogenic factors in recurrent malignant
Saori Okamoto1,2, Masayuki Nitta3,4, Takashi Maruyama3,4
1Department of Neurosurgery, Tokyo Women's Medical University, 8-1 Kawada-cho, Shinjuku-ku, Tokyo, 162-8666, Japan. saori.oka@gmail.com.
Abstract:
Bevacizumab (BV), a monoclonal antibody against vascular endothelial growth factor (VEGF), is currently used in the treatment of malignant glioma. To understand mechanisms of resistance to BV, we investigated morphological changes in tumor vessels and expression of angiogenic factors, such as VEGF, Flt-1, basic fibroblast growth factor (bFGF), and platelet-derived growth factor-BB (PDGF-BB), in four autopsied tumors after BV treatment. Three patients had glioblastomas; the fourth had a secondary glioblastoma that developed from a diffuse astrocytoma. BV was administered because of recurrence following the use of the Stupp regimen in these four patients. We compared the initial surgical specimen with that obtained after death following BV treatment. Immunohistochemical staining of the autopsied tumors showed that Flt-1 expression increased while VEGF expression was significantly reduced. Additionally, other angiogenic factors, particularly bFGF, were enhanced. Interestingly, the proliferation of endothelial cells was reduced, but remarkable proliferation of pericytes was observed. These results suggest that following BV treatment, glioblastomas can grow tumor vessels by expressing various angiogenic factors. These mechanisms might be important for rapid regrowth and blood brain barrier repair after BV treatment. Inhibition of multiple angiogenic factors will be required to control tumor vessels in glioblastoma.
Insights
Bevacizumab treatment for malignant glioma may lead to resistance by increasing other angiogenic factors and pericyte proliferation. Further research is needed to explore combined therapies targeting multiple factors for glioblastoma.
Area of Science:
- Oncology
- Vascular Biology
- Neuro-oncology
Background:
- Bevacizumab (BV), a vascular endothelial growth factor (VEGF) inhibitor, is used for malignant glioma.
- Mechanisms of BV resistance in glioblastoma are not fully understood.
Observation:
- Tumor samples from patients with glioblastoma treated with BV were analyzed post-mortem.
- Morphological changes in tumor vasculature and expression of angiogenic factors were examined.
Findings:
- Bevacizumab treatment led to reduced VEGF expression but increased Flt-1 and basic fibroblast growth factor (bFGF) expression.
- Endothelial cell proliferation decreased, while pericyte proliferation significantly increased.
- These changes suggest glioblastomas develop alternative vascularization pathways upon BV treatment.
Implications:
- Glioblastomas can evade Bevacizumab therapy by upregulating alternative angiogenic factors and pericyte recruitment.
- Combined inhibition of multiple angiogenic pathways may be necessary to effectively control tumor angiogenesis in recurrent glioblastoma.
- These findings highlight potential therapeutic strategies for overcoming BV resistance in malignant glioma.
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