Tanaka Hiroki
Institute for Integrated Radiation and Nuclear Science, Kyoto University.
Igaku Butsuri. 2021;41(3):117-121. doi: 10.11323/jjmp.41.3_117.
Clinical studies of boron neutron capture therapy (BNCT) have been conducted using thermal and epithermal neutron beams generated from research reactors. Considering the spread and development of BNCT, it has been desired to realize BNCT using an accelerator-based neutron source that can be installed in medical institutions. To date, the accelerator-based BNCT has been developed by combining various accelerators such as a cyclotron and a linear accelerator with neutron generation targets. In Japan, the world's first treatment system using a combination of a cyclotron and a beryllium target has received manufacturing and marketing approval as a medical device. In June 2020, BNCT insurance medical treatment was started at medical institutions. Currently, BNCT is being performed for cases of locally unresectable recurrent or unresectable advanced head and neck cancer. In this paper, it is shown that the history of reactor-based BNCT and the current development status and future prospects of the accelerator-based BNCT, which has been carried out in advance in Japan.
硼中子俘获疗法(BNCT)的临床研究一直使用研究堆产生的热中子束和超热中子束来进行。考虑到BNCT的推广和发展,人们期望利用可安装在医疗机构中的基于加速器的中子源来实现BNCT。迄今为止,基于加速器的BNCT已通过将回旋加速器和直线加速器等各种加速器与中子产生靶相结合而得以开发。在日本,世界上首个使用回旋加速器和铍靶组合的治疗系统已获得作为医疗器械的制造和销售批准。2020年6月,BNCT保险医疗在医疗机构启动。目前,BNCT正在用于治疗局部不可切除的复发性或不可切除的晚期头颈癌病例。本文展示了在日本预先开展的基于反应堆的BNCT的历史以及基于加速器的BNCT的当前发展现状和未来前景。