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Boron neutron capture therapy induces apoptosis of glioma cells through Bcl-2/Bax

BACKGROUND: Boron neutron capture therapy (BNCT) is an alternative treatment modality for patients with glioma. The aim of this study was to determine whether induction of apoptosis contributes to the main therapeutic efficacy of BNCT and to compare the relative biological effect (RBE) of BNCT, γ-ra...

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Autores principales: Wang, Peng, Zhen, Haining, Jiang, Xinbiao, Zhang, Wei, Cheng, Xin, Guo, Geng, Mao, Xinggang, Zhang, Xiang
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3003659/
https://www.ncbi.nlm.nih.gov/pubmed/21122152
http://dx.doi.org/10.1186/1471-2407-10-661
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author Wang, Peng
Zhen, Haining
Jiang, Xinbiao
Zhang, Wei
Cheng, Xin
Guo, Geng
Mao, Xinggang
Zhang, Xiang
author_facet Wang, Peng
Zhen, Haining
Jiang, Xinbiao
Zhang, Wei
Cheng, Xin
Guo, Geng
Mao, Xinggang
Zhang, Xiang
author_sort Wang, Peng
collection PubMed
description BACKGROUND: Boron neutron capture therapy (BNCT) is an alternative treatment modality for patients with glioma. The aim of this study was to determine whether induction of apoptosis contributes to the main therapeutic efficacy of BNCT and to compare the relative biological effect (RBE) of BNCT, γ-ray and reactor neutron irradiation. METHODS: The neutron beam was obtained from the Xi'an Pulsed Reactor (XAPR) and γ-rays were obtained from [(60)Co] γ source of the Fourth Military Medical University (FMMU) in China. Human glioma cells (the U87, U251, and SHG44 cell lines) were irradiated by neutron beams at the XAPR or [(60)Co] γ-rays at the FMMU with different protocols: Group A included control nonirradiated cells; Group B included cells treated with 4 Gy of [(60)Co] γ-rays; Group C included cells treated with 8 Gy of [(60)Co] γ-rays; Group D included cells treated with 4 Gy BPA (p-borono-phenylalanine)-BNCT; Group E included cells treated with 8 Gy BPA-BNCT; Group F included cells irradiated in the reactor for the same treatment period as used for Group D; Group G included cells irradiated in the reactor for the same treatment period as used for Group E; Group H included cells irradiated with 4 Gy in the reactor; and Group I included cells irradiated with 8 Gy in the reactor. Cell survival was determined using the 3-(4,5-dimethylthiazol-2-yl-2,5-diphenyltetrazolium (MTT) cytotoxicity assay. The morphology of cells was detected by Hoechst33342 staining and transmission electron microscope (TEM). The apoptosis rate was detected by flow cytometer (FCM). The level of Bcl-2 and Bax protein was measured by western blot analysis. RESULTS: Proliferation of U87, U251, and SHG44 cells was much more strongly inhibited by BPA-BNCT than by irradiation with [(60)Co] γ-rays (P < 0.01). Nuclear condensation was determined using both a fluorescence technique and electron microscopy in all cell lines treated with BPA-BNCT. Furthermore, the cellular apoptotic rates in Group D and Group E treated with BPA-BNCT were significantly higher than those in Group B and Group C irradiated by [(60)Co] γ-rays (P < 0.01). The clonogenicity of glioma cells was reduced by BPA-BNCT compared with cells treated in the reactor (Group F, G, H, I), and with the control cells (P < 0.01). Upon BPA-BNCT treatment, the Bax level increased in glioma cells, whereas Bcl-2 expression decreased. CONCLUSIONS: Compared with γ-ray and reactor neutron irradiation, a higher RBE can be achieved upon treatment of glioma cells with BNCT. Glioma cell apoptosis induced by BNCT may be related to activation of Bax and downregulation of Bcl-2.
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spelling pubmed-30036592010-12-18 Boron neutron capture therapy induces apoptosis of glioma cells through Bcl-2/Bax Wang, Peng Zhen, Haining Jiang, Xinbiao Zhang, Wei Cheng, Xin Guo, Geng Mao, Xinggang Zhang, Xiang BMC Cancer Research Article BACKGROUND: Boron neutron capture therapy (BNCT) is an alternative treatment modality for patients with glioma. The aim of this study was to determine whether induction of apoptosis contributes to the main therapeutic efficacy of BNCT and to compare the relative biological effect (RBE) of BNCT, γ-ray and reactor neutron irradiation. METHODS: The neutron beam was obtained from the Xi'an Pulsed Reactor (XAPR) and γ-rays were obtained from [(60)Co] γ source of the Fourth Military Medical University (FMMU) in China. Human glioma cells (the U87, U251, and SHG44 cell lines) were irradiated by neutron beams at the XAPR or [(60)Co] γ-rays at the FMMU with different protocols: Group A included control nonirradiated cells; Group B included cells treated with 4 Gy of [(60)Co] γ-rays; Group C included cells treated with 8 Gy of [(60)Co] γ-rays; Group D included cells treated with 4 Gy BPA (p-borono-phenylalanine)-BNCT; Group E included cells treated with 8 Gy BPA-BNCT; Group F included cells irradiated in the reactor for the same treatment period as used for Group D; Group G included cells irradiated in the reactor for the same treatment period as used for Group E; Group H included cells irradiated with 4 Gy in the reactor; and Group I included cells irradiated with 8 Gy in the reactor. Cell survival was determined using the 3-(4,5-dimethylthiazol-2-yl-2,5-diphenyltetrazolium (MTT) cytotoxicity assay. The morphology of cells was detected by Hoechst33342 staining and transmission electron microscope (TEM). The apoptosis rate was detected by flow cytometer (FCM). The level of Bcl-2 and Bax protein was measured by western blot analysis. RESULTS: Proliferation of U87, U251, and SHG44 cells was much more strongly inhibited by BPA-BNCT than by irradiation with [(60)Co] γ-rays (P < 0.01). Nuclear condensation was determined using both a fluorescence technique and electron microscopy in all cell lines treated with BPA-BNCT. Furthermore, the cellular apoptotic rates in Group D and Group E treated with BPA-BNCT were significantly higher than those in Group B and Group C irradiated by [(60)Co] γ-rays (P < 0.01). The clonogenicity of glioma cells was reduced by BPA-BNCT compared with cells treated in the reactor (Group F, G, H, I), and with the control cells (P < 0.01). Upon BPA-BNCT treatment, the Bax level increased in glioma cells, whereas Bcl-2 expression decreased. CONCLUSIONS: Compared with γ-ray and reactor neutron irradiation, a higher RBE can be achieved upon treatment of glioma cells with BNCT. Glioma cell apoptosis induced by BNCT may be related to activation of Bax and downregulation of Bcl-2. BioMed Central 2010-12-02 /pmc/articles/PMC3003659/ /pubmed/21122152 http://dx.doi.org/10.1186/1471-2407-10-661 Text en Copyright ©2010 Wang et al; licensee BioMed Central Ltd. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (<url>http://creativecommons.org/licenses/by/2.0</url>), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Wang, Peng
Zhen, Haining
Jiang, Xinbiao
Zhang, Wei
Cheng, Xin
Guo, Geng
Mao, Xinggang
Zhang, Xiang
Boron neutron capture therapy induces apoptosis of glioma cells through Bcl-2/Bax
title Boron neutron capture therapy induces apoptosis of glioma cells through Bcl-2/Bax
title_full Boron neutron capture therapy induces apoptosis of glioma cells through Bcl-2/Bax
title_fullStr Boron neutron capture therapy induces apoptosis of glioma cells through Bcl-2/Bax
title_full_unstemmed Boron neutron capture therapy induces apoptosis of glioma cells through Bcl-2/Bax
title_short Boron neutron capture therapy induces apoptosis of glioma cells through Bcl-2/Bax
title_sort boron neutron capture therapy induces apoptosis of glioma cells through bcl-2/bax
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3003659/
https://www.ncbi.nlm.nih.gov/pubmed/21122152
http://dx.doi.org/10.1186/1471-2407-10-661
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