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<i>In Vitro</i>Evaluation System of Pharmacokinetics and Irradiation Effect in Boron Neutron Capture Therapy (BNCT) Using Three-Dimensional Artificial Human Tumor Tissue Model 被引量:1
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作者 Shintaro Ishiyama Yoshiya Asano +2 位作者 Minoru Suzuki Mitsuru Akashi Hiroshi Shimoda 《Journal of Cancer Therapy》 2019年第10期835-845,共11页
Boron neutron capture therapy (BNCT) is based on the incorporation of boron-containing drugs to cancer cells and the nuclear reaction of 10B atoms by thermal neutron irradiation results in tumor degeneration. For the ... Boron neutron capture therapy (BNCT) is based on the incorporation of boron-containing drugs to cancer cells and the nuclear reaction of 10B atoms by thermal neutron irradiation results in tumor degeneration. For the development of this therapy, currently, long time and high cost consuming experiments using many animals are required. In this study, we constructed a new in vitro evaluation system for BNCT by combination of an artificial tumor tissue model, comprised of normal human dermal-derived fibroblast (NHDF) and human pancreatic cancer cell line BxPC3, and the optical plastic material CR-39 as a solid state nuclear track detector. Administration of boronophenylalanine (10BPA) as a boron-containing drug and neutron irradiation up to 2.52 × 1012 n/cm2 to the control tissue constructed by NHDF (NHDF3D) and BxPC3 cell loaded tissue (NHDF3D/BxPC3) resulted in detection of 1.6 times higher number of α-ray/recoiled Li particle tracks in NHDF3D/BxPC3 in comparison to NHDF3D, demonstrating that putative irradiation damage to cancer cells can be evaluated by this system. On a cellular level, the hit number of α-ray/recoiled Li particle tracks per single BxPC3 cells and NHDF was evaluated as 5.46 and 1.71, respectively. The tumor and normal tissue ratio (T/N ratio) was 3.19, which was corresponded with those of BPA as 2 - 4 that reported in the previous studies. This new in vitro evaluation system may provide a useful tool for a low cost, labor-saving, and non-animal method for the development of new boron-containing drugs or improvement of BNCT conditions. 展开更多
关键词 Boron neutron capture therapy (bnct) Boronophenylalanine (10bPA) Artificial Human tumor TISSUE MODEL Cell Accumulation Method
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Radiation Sensitivity of <i>in Vitro</i>Evaluation System of Pharmacokinetics in Boron Neutron Capture Therapy (BNCT) Using Three-Dimensional Artificial Human Tumor Tissue Model
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作者 Shintaro Ishiyama Minoru Suzuki 《Journal of Cancer Therapy》 2019年第12期1025-1035,共11页
One of the important matters that must be determined in advance when performing BNCT treatment is the optimization of neutron irradiation time and dose. In this article, following the previous article (2.52 × 101... One of the important matters that must be determined in advance when performing BNCT treatment is the optimization of neutron irradiation time and dose. In this article, following the previous article (2.52 × 1012 n/cm2) (Case 1), double irradiation (5.04 × 1012 n/cm2) was further performed (Case 2) by verifying the radiation sensitivity performance of the artificial tumor tissue NHDF3D/BxPC3 and the possibility of evaluating the optimum neutron dose required for treatment was examined. As a result, although the radiation damage rate in the normal tissue NHDF3D and the tumor tissue BxPC3 increased in proportion to the irradiation dose due to heavy irradiation in Case 1 or more, the increase in the damage rate in the normal tissue exceeded the tumor tissue. Furthermore, the tumor/normal tissue damage ratio T/N ratio showed the maximum value in Case 1, and the dose ratio in Case 2 with a higher dose showed a tendency to decrease. From the above experimental facts, it was shown that irradiation dose optimization is possible to some extent by an evaluation method using an artificial tumor tissue. 展开更多
关键词 Boron neutron capture therapy (bnct) Boronophenylalanine (10bPA) Artificial Human tumor TISSUE MODEL Cell Accumulation Method
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Deterministic Parsing Model of the Compound Biological Effectiveness (<i>CBE</i>) Factor for Intracellular <sup>10</sup>Boron Distribution in Boron Neutron Capture Therapy 被引量:2
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作者 Shintaro Ishiyama 《Journal of Cancer Therapy》 2014年第14期1388-1398,共11页
Purpose: In defining the biological effects of the 10B(n, α)7Li neutron capture reaction, we have previously developed a deterministic parsing model to determine the Compound Biological Effectiveness (CBE) factor in ... Purpose: In defining the biological effects of the 10B(n, α)7Li neutron capture reaction, we have previously developed a deterministic parsing model to determine the Compound Biological Effectiveness (CBE) factor in Borono-Phenyl-Alanine (BPA)-mediated Boron Neutron Capture Therapy (BNCT). In present paper, we demonstrate that the CBE factor is directly and unambiguously derivable by the new formula for any case of intracellular 10Boron (10B) distribution, which is founded on this model for tissues and tumor. Method: To determine the CBE factor, we derive the following new calculation formula founded on the deterministic parsing model with three constants, CBE0, F, n and the eigen value Nth/Nmax. where, Nth and Nmax are the threshold value of boron concentration of N and saturation boron density in tissues and tumor. In order to determine these constants and the eigen values, iterative calculation technique was employed for the CEB factor and Nmax data set previously reported. Results and Conclusion: From the iterative calculation results, it is clear that the calculated CBE factor values obtained are almost identical to the original CBE factors and there is a good correlation between the original CBE factors and Nth/Nmax, when CBE0, F and n are given as 0.5, 8 and 3, respectively. These constants provide a better understanding of different types of intracellular10B distribution. 展开更多
关键词 Boron neutron capture therapy COMPOUND Biological Effectiveness Borono-Phenyl-Alanine tumor 10b(n α)7Li
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硼中子俘获治疗 被引量:14
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作者 罗全勇 朱瑞森 《同位素》 CAS 2004年第3期174-177,182,共5页
硼中子俘获治疗(BNCT)的基本原理是应用热中子照射靶向聚集在肿瘤部位的10B,10B俘获中子后产生α粒子和7Li,α粒子和7Li杀灭肿瘤细胞而起到治疗作用。BNCT在临床上主要用于神经胶质瘤和黑色素瘤的治疗。文章主要对有关BNCT的基础及临床... 硼中子俘获治疗(BNCT)的基本原理是应用热中子照射靶向聚集在肿瘤部位的10B,10B俘获中子后产生α粒子和7Li,α粒子和7Li杀灭肿瘤细胞而起到治疗作用。BNCT在临床上主要用于神经胶质瘤和黑色素瘤的治疗。文章主要对有关BNCT的基础及临床研究进行了简要综述,内容包括BNCT的基本原理、10B在肿瘤细胞的聚集、中子源、实验研究现状以及BNCT面临的挑战与问题等。 展开更多
关键词 ^10b 硼中子俘获治疗(bnct) 放射治疗
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硼中子俘获疗法治疗肿瘤及相关技术研究进展 被引量:5
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作者 罗军益 何佳恒 《辐射防护通讯》 2010年第2期26-29,共4页
介绍了硼中子俘获疗法(BNCT)治疗肿瘤的原理及特点,及其相关技术研究进展;从5个方面提出了建议,即寻求理想的核素化合物,研究精确的剂量测算体系,开发更合理的中子源,开发更好的硼携带剂,将BNCT与其它疗法结合以提高疗效。
关键词 肿瘤治疗 硼中子俘获 硼携带剂
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硼中子俘获治疗中硼浓度测量方法的研究进展
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作者 李林 赵倩 +1 位作者 张瑞平 李利平 《核化学与放射化学》 CAS CSCD 北大核心 2023年第6期532-540,I0003,共10页
硼中子俘获治疗(boron neutron capture therapy, BNCT)是基于细胞水平的二元靶向新型放射疗法,其治疗机理是利用10B(n,ɑ)7Li*的核裂变反应,产生的α和7Li粒子在细胞尺度内释放所有能量,选择性杀伤肿瘤细胞而对周围正常组织几乎没有影... 硼中子俘获治疗(boron neutron capture therapy, BNCT)是基于细胞水平的二元靶向新型放射疗法,其治疗机理是利用10B(n,ɑ)7Li*的核裂变反应,产生的α和7Li粒子在细胞尺度内释放所有能量,选择性杀伤肿瘤细胞而对周围正常组织几乎没有影响。相比传统的放疗,BNCT具有精准靶向定位、高生物效应、短疗程的优势,是国际粒子治疗的热点。目前BNCT正在推行临床试验,在瘤内动态、定量监测含10B药物的硼浓度是实现BNCT“增效、减副”的关键要素。本文简要介绍了BNCT治疗原理,总结了BNCT治疗过程中含硼药物的多种监测方法,包括物理测量法、核测量法、化学测量法以及利用新型分子影像技术(如正电子发射断层成像、磁共振成像、光学成像等)原位、动态、定量监测的新方法,分析了各种方法的优势与局限性,并提出未来BNCT治疗过程中硼浓度精准监测的新发展方向,旨在实现BNCT精准治疗。 展开更多
关键词 硼中子俘获治疗 含硼药物 硼浓度监测 分子影像
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Determination of the Compound Biological Effectiveness (CBE) Factors Based on the <i>ISHIYAMA-IMAHORI</i>Deterministic Parsing Model with the Dynamic PET Technique 被引量:2
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作者 Shintaro Ishiyama Yoshio Imahori +1 位作者 Jun Itami Hanna Koivunoro 《Journal of Cancer Therapy》 2015年第8期759-766,共8页
Purpose: In defining the biological effects of the 10B(n, α)7Li neutron capture reaction, we have proposed a deterministic parsing model (ISHIYAMA-IMAHORI model) to determine the Compound Biological Effectiveness (CB... Purpose: In defining the biological effects of the 10B(n, α)7Li neutron capture reaction, we have proposed a deterministic parsing model (ISHIYAMA-IMAHORI model) to determine the Compound Biological Effectiveness (CBE) factor in Borono-Phenyl-Alanine (BPA)-mediated Boron Neutron Capture Therapy (BNCT). In present paper, we demonstrate a specific method of how the application of the case of application to actual patient data, which is founded on this model for tissues and tumor. Method: To determine the CBE factor, we derived the following new calculation formula founded on the deterministic parsing model with three constants, CBE0, F, n and the eigen value Nth/Nmax.? (1), where, Nth and Nmax are the threshold value of boron concentration of N and saturation boron density and CBE0, F and n are given as 0.5, 8 and 3, respectively. In order to determine Nth and Nmax in the formula, sigmoid logistic function was employed for 10B concentration data, Db(t) obtained by dynamic PET technique. (2), where, A, a and t0 are constants. Results and Conclusion: From the application of sigmoid function to dynamic PET data, it is concluded that the Nth and Nmax for tissue and tumor are identified with the parameter constants in the sigmoid function in Equation (2) as: (3). And the calculated CBE factor values obtained from Equation (1), with Nth/Nmax. 展开更多
关键词 Boron neutron capture therapy COMPOUND Biological Effectiveness Borono-Phenyl-Alanine tumor 10b(n α)7Li SIGMOID Function
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