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硼中子俘获治疗动物模型中硼药物的宏、微观分布。

Macro- and microdistributions of boron drug for boron neutron capture therapy in an animal model.

机构信息

Institute of Nuclear Engineering and Science, National Tsing Hua University, Hsinchu, Taiwan, ROC.

出版信息

Anticancer Res. 2012 Jul;32(7):2657-64.

Abstract

BACKGROUND

The boron concentration (BC) in the blood, rather than in normal tissue, is often used as the reference to calculate the BC in tumor for boron neutron capture therapy (BNCT). The aims of this study were to justify whether BC in the blood is equal to that of normal tissue, and to verify the macro- and microdistributions of boron in tumor.

MATERIALS AND METHODS

BALB/c nude mice bearing SAS human oral carcinoma xenografts were intravenously injected with 400 mg/kg of boronophenylalanine (BPA). Macro- and microdistributions of boron in the tumor were assayed with (18)F-fluoro-L-boronophenylalanine-fructose (FBPA-Fr)/micro-positron-emission tomography (PET) and alpha track autoradiography, respectively.

RESULTS

The BCs assayed from the blood, normal tissue and tumor varied even on sampling at the same time points post-BPA administration. The ratio of BC in normal tissue to that in blood, i.e. N/B ratio, remains about 1.31 at 30 to 45 min post-BPA administration. Furthermore, (18)F-FBPA-Fr/micro-PET imaging and autoradiography also showed heterogeneous boron distribution in the tumor.

CONCLUSION

The heterogeneous distribution of boron in the tumor is a limiting factor for the precise calculation of BC in the tumor. Here we suggest that the N/B ratio could be used to calculate the true BC in the tumor and in normal tissue for BNCT. (18)F-FBPA-Fr/PET imaging is useful to justify the N/B ratio for BNCT treatment.

摘要

背景

在硼中子俘获治疗(BNCT)中,常以血液中的硼浓度(BC)而非正常组织中的硼浓度作为参考来计算肿瘤中的硼浓度。本研究旨在验证血液中的硼浓度是否等同于正常组织中的硼浓度,并验证肿瘤中硼的宏观和微观分布。

材料与方法

BALB/c 裸鼠皮下接种 SAS 人口腔癌异种移植瘤后,静脉注射 400mg/kg 硼苯丙氨酸(BPA)。采用 18F-氟-L-硼苯丙氨酸-果糖(FBPA-Fr)/微正电子发射断层扫描(micro-PET)和α径迹放射自显影分别检测肿瘤中的硼的宏观和微观分布。

结果

即使在同一时间点进行采血,血液、正常组织和肿瘤中的 BC 也存在差异。正常组织与血液中硼浓度的比值(N/B 比值)在 BPA 给药后 30-45 分钟时约为 1.31。此外,18F-FBPA-Fr/micro-PET 成像和放射自显影也显示肿瘤中硼分布不均匀。

结论

肿瘤中硼的不均匀分布是精确计算肿瘤中硼浓度的限制因素。在此,我们建议可以使用 N/B 比值来计算 BNCT 治疗中肿瘤和正常组织中的真实硼浓度。18F-FBPA-Fr/PET 成像可用于验证 BNCT 治疗中的 N/B 比值。

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