Biological Response of Chinese Hamster B14-150 Cells to Sequential Combined Exposure to Protons and 12C Ions

Proton and ion radiation therapy, when used both as single radiation and in mixed radiation mode, have a number of advantages over the conventional γ-therapy that are determined by physical characteristics of accelerated particles. The paper presents the results of an in vitro study of the effective...

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Published inBulletin of experimental biology and medicine Vol. 176; no. 1; pp. 38 - 41
Main Authors Troshina, M. V., Koryakina, E. V., Potetnya, V. I., Solov’ev, A. N., Saburov, V. O., Lychagin, A. A., Ivanov, S. A., Kaprin, A. D., Koryakin, S. N.
Format Journal Article
LanguageEnglish
Published New York Springer US 01.11.2023
Springer Nature B.V
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Abstract Proton and ion radiation therapy, when used both as single radiation and in mixed radiation mode, have a number of advantages over the conventional γ-therapy that are determined by physical characteristics of accelerated particles. The paper presents the results of an in vitro study of the effectiveness of sequential exposures of Chinese hamster tumor cells B14-150 to proton (p) and 12 C ion beams. We used 4 irradiation schemes differing by the sequence of exposure and the contribution of each radiation to the total dose. Synergism was shown for 12 C ions dose contribution of 45% (taking into account the coefficient of relative biological efficiency) and the sequence 12 C→p.
AbstractList Proton and ion radiation therapy, when used both as single radiation and in mixed radiation mode, have a number of advantages over the conventional γ-therapy that are determined by physical characteristics of accelerated particles. The paper presents the results of an in vitro study of the effectiveness of sequential exposures of Chinese hamster tumor cells B14-150 to proton (p) and 12C ion beams. We used 4 irradiation schemes differing by the sequence of exposure and the contribution of each radiation to the total dose. Synergism was shown for 12C ions dose contribution of 45% (taking into account the coefficient of relative biological efficiency) and the sequence 12C→p.
Proton and ion radiation therapy, when used both as single radiation and in mixed radiation mode, have a number of advantages over the conventional γ-therapy that are determined by physical characteristics of accelerated particles. The paper presents the results of an in vitro study of the effectiveness of sequential exposures of Chinese hamster tumor cells B14-150 to proton (p) and 12 C ion beams. We used 4 irradiation schemes differing by the sequence of exposure and the contribution of each radiation to the total dose. Synergism was shown for 12 C ions dose contribution of 45% (taking into account the coefficient of relative biological efficiency) and the sequence 12 C→p.
Author Kaprin, A. D.
Lychagin, A. A.
Koryakin, S. N.
Saburov, V. O.
Solov’ev, A. N.
Koryakina, E. V.
Troshina, M. V.
Ivanov, S. A.
Potetnya, V. I.
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Cites_doi 10.1016/j.ijrobp.2019.10.008
10.1088/1361-6560/aafe40
10.3389/fonc.2016.00140
10.21870/0131-3878-2019-28-3-96-106
10.1007/BF02430653
10.1007/s10517-022-05604-1
10.1002/9780470649367
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C ions
protons
tumor cells
cells survival
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Snippet Proton and ion radiation therapy, when used both as single radiation and in mixed radiation mode, have a number of advantages over the conventional γ-therapy...
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SubjectTerms Biomedical and Life Sciences
Biomedicine
Cell Biology
Cells
Dependence
Efficiency
Internal Medicine
Laboratory Medicine
Medical research
Pathology
Physical characteristics
Protons
Radiation therapy
Tumor cells
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Title Biological Response of Chinese Hamster B14-150 Cells to Sequential Combined Exposure to Protons and 12C Ions
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