Boron neutron capture therapy and add-on bevacizumab in patients with recurrent malignant glioma.


Journal

Japanese journal of clinical oncology
ISSN: 1465-3621
Titre abrégé: Jpn J Clin Oncol
Pays: England
ID NLM: 0313225

Informations de publication

Date de publication:
05 May 2022
Historique:
received: 05 11 2021
accepted: 06 01 2021
pubmed: 27 1 2022
medline: 10 5 2022
entrez: 26 1 2022
Statut: ppublish

Résumé

Although boron neutron capture therapy has shown excellent survival data, previous studies have shown an increase in radiation necrosis against recurrent malignant glioma. Herein, we proposed that bevacizumab may reduce radiation injury from boron neutron capture therapy by re-irradiation. We evaluated the efficacy and safety of a boron neutron capture therapy and add-on bevacizumab combination therapy in patients with recurrent malignant glioma. Patients with recurrent malignant glioma were treated with reactor-based boron neutron capture therapy. Treatment with bevacizumab (10 mg/kg) was initiated 1-4 weeks after boron neutron capture therapy and was administered every 2-3 weeks until disease progression. Initially diagnosed glioblastomas were categorized as primary glioblastoma, whereas other forms of malignant glioma were categorized as non-primary glioblastoma. Twenty-five patients (14 with primary glioblastoma and 11 with non-primary glioblastoma) were treated with boron neutron capture therapy and add-on bevacizumab. The 1-year survival rate for primary glioblastoma and non-primary glioblastoma was 63.5% (95% confidence interval: 33.1-83.0) and 81.8% (95% confidence interval: 44.7-95.1), respectively. The median overall survival was 21.4 months (95% confidence interval: 7.0-36.7) and 73.6 months (95% confidence interval: 11.4-77.2) for primary glioblastoma and non-primary glioblastoma, respectively. The median progression-free survival was 8.3 months (95% confidence interval: 4.2-12.1) and 15.6 months (95% confidence interval: 3.1-29.8) for primary glioblastoma and non-primary glioblastoma, respectively. Neither pseudoprogression nor radiation necrosis were identified during bevacizumab treatment. Alopecia occurred in all patients. Six patients experienced adverse events ≥grade 3. Boron neutron capture therapy and add-on bevacizumab provided a long overall survival and a long progression-free survival in recurrent malignant glioma compared with previous studies on boron neutron capture therapy alone. The add-on bevacizumab may reduce the detrimental effects of boron neutron capture therapy, including pseudoprogression and radiation necrosis. Further studies of the combination therapy with a larger sample size and a randomized controlled design are warranted.

Sections du résumé

BACKGROUND BACKGROUND
Although boron neutron capture therapy has shown excellent survival data, previous studies have shown an increase in radiation necrosis against recurrent malignant glioma. Herein, we proposed that bevacizumab may reduce radiation injury from boron neutron capture therapy by re-irradiation. We evaluated the efficacy and safety of a boron neutron capture therapy and add-on bevacizumab combination therapy in patients with recurrent malignant glioma.
METHODS METHODS
Patients with recurrent malignant glioma were treated with reactor-based boron neutron capture therapy. Treatment with bevacizumab (10 mg/kg) was initiated 1-4 weeks after boron neutron capture therapy and was administered every 2-3 weeks until disease progression. Initially diagnosed glioblastomas were categorized as primary glioblastoma, whereas other forms of malignant glioma were categorized as non-primary glioblastoma.
RESULTS RESULTS
Twenty-five patients (14 with primary glioblastoma and 11 with non-primary glioblastoma) were treated with boron neutron capture therapy and add-on bevacizumab. The 1-year survival rate for primary glioblastoma and non-primary glioblastoma was 63.5% (95% confidence interval: 33.1-83.0) and 81.8% (95% confidence interval: 44.7-95.1), respectively. The median overall survival was 21.4 months (95% confidence interval: 7.0-36.7) and 73.6 months (95% confidence interval: 11.4-77.2) for primary glioblastoma and non-primary glioblastoma, respectively. The median progression-free survival was 8.3 months (95% confidence interval: 4.2-12.1) and 15.6 months (95% confidence interval: 3.1-29.8) for primary glioblastoma and non-primary glioblastoma, respectively. Neither pseudoprogression nor radiation necrosis were identified during bevacizumab treatment. Alopecia occurred in all patients. Six patients experienced adverse events ≥grade 3.
CONCLUSIONS CONCLUSIONS
Boron neutron capture therapy and add-on bevacizumab provided a long overall survival and a long progression-free survival in recurrent malignant glioma compared with previous studies on boron neutron capture therapy alone. The add-on bevacizumab may reduce the detrimental effects of boron neutron capture therapy, including pseudoprogression and radiation necrosis. Further studies of the combination therapy with a larger sample size and a randomized controlled design are warranted.

Identifiants

pubmed: 35079791
pii: 6515543
doi: 10.1093/jjco/hyac004
doi:

Substances chimiques

Bevacizumab 2S9ZZM9Q9V

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

433-440

Subventions

Organisme : Japanese Ministry of Education, Science and Culture and Kenzo Suzuki Memorial Medical Science Applications Foundation
ID : 16390422

Informations de copyright

© The Author(s) 2022. Published by Oxford University Press. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com.

Auteurs

Motomasa Furuse (M)

Department of Neurosurgery, Osaka Medical and Pharmaceutical University, Takatsuki, Osaka 569-8686, Japan.

Shinji Kawabata (S)

Department of Neurosurgery, Osaka Medical and Pharmaceutical University, Takatsuki, Osaka 569-8686, Japan.

Masahiko Wanibuchi (M)

Department of Neurosurgery, Osaka Medical and Pharmaceutical University, Takatsuki, Osaka 569-8686, Japan.
Kansai BNCT Medical Center, Osaka Medical and Pharmaceutical University, Takatsuki, Osaka 569-8686, Japan.

Hiroyuki Shiba (H)

Department of Neurosurgery, Osaka Medical and Pharmaceutical University, Takatsuki, Osaka 569-8686, Japan.

Koji Takeuchi (K)

Department of Neurosurgery, Osaka Medical and Pharmaceutical University, Takatsuki, Osaka 569-8686, Japan.
Cerebrospinal center, Shiroyama Hospital, Habikino, Osaka 583-0872, Japan.

Natsuko Kondo (N)

Institute for Integrated Radiation and Nuclear Science, Kyoto University, Kumatori, Osaka 590-0494, Japan.

Hiroki Tanaka (H)

Institute for Integrated Radiation and Nuclear Science, Kyoto University, Kumatori, Osaka 590-0494, Japan.

Yoshinori Sakurai (Y)

Institute for Integrated Radiation and Nuclear Science, Kyoto University, Kumatori, Osaka 590-0494, Japan.

Minoru Suzuki (M)

Cerebrospinal center, Shiroyama Hospital, Habikino, Osaka 583-0872, Japan.

Koji Ono (K)

Kansai BNCT Medical Center, Osaka Medical and Pharmaceutical University, Takatsuki, Osaka 569-8686, Japan.

Shin-Ichi Miyatake (SI)

Department of Neurosurgery, Osaka Medical and Pharmaceutical University, Takatsuki, Osaka 569-8686, Japan.
Kansai BNCT Medical Center, Osaka Medical and Pharmaceutical University, Takatsuki, Osaka 569-8686, Japan.

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