Furusawa Y, Fukutsu K, Aoki M, Itsukaichi H, Eguchi-Kasai K, Ohara H, Yatagai F, Kanai T, Ando K
International Space Radiation Laboratory, Division of Radiotoxocology and Protection, Chiba, Japan.
Radiat Res. 2000 Nov;154(5):485-96. doi: 10.1667/0033-7587(2000)154[0485:ioaahc]2.0.co;2.
The LET-RBE spectra for cell killing for cultured mammalian cells exposed to accelerated heavy ions were investigated to design a spread-out Bragg peak beam for cancer therapy at HIMAC, National Institute of Radiological Sciences, Chiba, prior to clinical trials. Cells that originated from a human salivary gland tumor (HSG cells) as well as V79 and T1 cells were exposed to (3)He-, (12)C- and (20)Ne-ion beams with an LET ranging from approximately 20-600 keV/micrometer under both aerobic and hypoxic conditions. Cell survival curves were fitted by equations from the linear-quadratic model and the target model to obtain survival parameters. RBE, OER, alpha and D(0) were analyzed as a function of LET. The RBE increased with LET, reaching a maximum at around 200 keV/micrometer, then decreased with a further increase in LET. Clear splits of the LET-RBE or -OER spectra were found among ion species and/or cell lines. At a given LET, the RBE value for (3)He ions was higher than that for the other ions. The position of the maximum RBE shifts to higher LET values for heavier ions. The OER value was 3 for X rays but started to decrease at an LET of around 50 keV/micrometer, passed below 2 at around 100 keV/micrometer, and then reached a minimum above 300 keV/micrometer, but the values remained greater than 1. The OER was significantly lower for (3)He ions than the others.
为了在千叶县国立放射科学研究所的重离子医学加速器设施(HIMAC)进行癌症治疗的临床试验之前设计一种扩展布拉格峰束,研究了暴露于加速重离子的培养哺乳动物细胞的细胞杀伤的传能线密度(LET)-相对生物效应(RBE)谱。将源自人唾液腺肿瘤的细胞(HSG细胞)以及V79和T1细胞在有氧和缺氧条件下暴露于LET范围约为20 - 600 keV/微米的氦-3、碳-12和氖-20离子束。通过线性二次模型和靶模型的方程拟合细胞存活曲线以获得存活参数。分析了RBE、氧增强比(OER)、α和D(0)作为LET的函数。RBE随LET增加,在约200 keV/微米处达到最大值,然后随着LET进一步增加而降低。在离子种类和/或细胞系之间发现了LET-RBE或-OER谱的明显分裂。在给定的LET下,氦-3离子的RBE值高于其他离子。对于较重的离子,最大RBE的位置向更高的LET值移动。X射线的OER值为3,但在LET约为50 keV/微米时开始下降,在约100 keV/微米时低于2,然后在高于300 keV/微米时达到最小值,但值仍大于1。氦-3离子的OER明显低于其他离子。