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硼中子俘获治疗中剂量率对细胞存活的影响。

Dose Rate Effect on Cell Survival in BNCT.

作者信息

Hirose Katsumi, Sato Mariko, Ichise Koji, Aoki Masahiko

机构信息

Department of Radiation Oncology, Graduate School of Medicine, Hirosaki University, 5 Zaifu-cho, Hirosaki 036-8562, Japan.

Southern Tohoku BNCT Research Center, 7-10 Yatsuyamada, Koriyama 963-8052, Japan.

出版信息

Curr Issues Mol Biol. 2023 Aug 23;45(9):6986-6994. doi: 10.3390/cimb45090441.

Abstract

The output constancy of the accelerator used for boron neutron capture therapy (BNCT) is essential to ensuring anti-tumor efficacy and safety. BNCT as currently practiced requires a wide variety of beam quality assessments to ensure that RBE dose errors are maintained within 5%. However, the necessity of maintaining a constant beam dose rate has not been fully discussed. We therefore clarified the effect of different physical dose rates of the accelerator BNCT on biological effects. SAS and A172 cells exposed to B-boronophenylalanine were irradiated using a neutron beam (normal operating current, 100 μA) at the Aomori Quantum Science Center. Thermal neutron flux was attenuated to 50.0 ± 0.96% under 50 μA irradiation compared to that under 100 μA irradiation. Cells were given physical doses of 1.67 and 3.36 Gy at 30 and 60 mC, respectively, and survival was significantly increased after 50 μA irradiation for both cell types ( = 0.0052 for SAS; = 0.046 for A172, for 60 mC). Differences in accelerator BNCT beam dose rates have non-negligible effects on biological effects. Dose rate fluctuations and differences should not be easily permitted to obtain consistent biological effects.

摘要

用于硼中子俘获疗法(BNCT)的加速器的输出稳定性对于确保抗肿瘤疗效和安全性至关重要。目前实施的BNCT需要进行各种各样的束流质量评估,以确保相对生物效应剂量误差保持在5%以内。然而,维持恒定束流剂量率的必要性尚未得到充分讨论。因此,我们阐明了加速器BNCT不同物理剂量率对生物学效应的影响。在青森量子科学中心,使用中子束(正常工作电流100μA)对暴露于B-硼苯丙氨酸的SAS和A172细胞进行照射。与100μA照射相比,50μA照射下热中子通量衰减至50.0±0.96%。细胞分别在30和60mC时给予1.67和3.36Gy的物理剂量,两种细胞类型在50μA照射后存活率均显著提高(SAS为0.0052;A172为0.046,60mC时)。加速器BNCT束流剂量率的差异对生物学效应有不可忽视的影响。不应轻易允许剂量率波动和差异存在,以获得一致的生物学效应。

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