Shibamoto Y, Ono K, Takahashi M, Kano E, Hori H, Shibata T, Inayama S, Abe M
Jpn J Cancer Res. 1986 Oct;77(10):1027-33.
An experimental tumor system consisting of single cells, spheroids, and solid tumors was developed using the EMT6/KU cell-line for evaluation of new hypoxic cell sensitizers. This paper describes the radiation dose-survival curves of the system and the effects of four sensitizers [misonidazole, Ro 03-8799, KB-11 (a sulfonyltetrazole derivative), and DNIE (a dinitroimidazole derivative)] in this system. Dose-survival curves of the spheroids varied significantly depending on the irradiation conditions, but it was found that the spheroids could model the solid tumors when they were irradiated in flat-bottomed flasks. These spheroids and solid tumors contained substantial fractions of hypoxic cells, and hence were suitable for testing hypoxic cell sensitizers. Misonidazole at a concentration of 1 mM or 1 mmol/kg showed a constant enhancement ratio (ER) of 1.55 in all of the systems. The ERs of the other three compounds for single cells, spheroids, and solid tumors were 2.1, 1.9, and 1.65, respectively, for Ro 03-8799 (1 mM or 1 mmol/kg); 2.6, 1.6, and 1.0, respectively, for KB-11 (0.5mM or 0.5 mmol/kg); 1.8, 1.2, and 1.1, respectively, for DNIE (0.5mM or 0.5 mmol/kg). These results indicated that the ER for spheroids is closer to the ER for solid tumors than is the ER for single cells in most cases. It was also suggested that an efficient sensitizer in vivo shows little or no difference between its ER for single cells and that for spheroids.
利用EMT6/KU细胞系开发了一种由单细胞、球体和实体瘤组成的实验性肿瘤系统,用于评估新型乏氧细胞增敏剂。本文描述了该系统的辐射剂量-存活曲线以及四种增敏剂[米索硝唑、Ro 03-8799、KB-11(一种磺酰四唑衍生物)和DNIE(一种二硝基咪唑衍生物)]在该系统中的作用。球体的剂量-存活曲线根据照射条件有显著差异,但发现当在平底烧瓶中照射时,球体可以模拟实体瘤。这些球体和实体瘤含有大量乏氧细胞,因此适合测试乏氧细胞增敏剂。浓度为1 mM或1 mmol/kg的米索硝唑在所有系统中显示出恒定的增敏比(ER)为1.55。Ro 03-8799(1 mM或1 mmol/kg)对单细胞、球体和实体瘤的ER分别为2.1、1.9和1.65;KB-11(0.5 mM或0.5 mmol/kg)的ER分别为2.6、1.6和1.0;DNIE(0.5 mM或0.5 mmol/kg)的ER分别为1.8、1.2和1.1。这些结果表明,在大多数情况下,球体的ER比单细胞的ER更接近实体瘤的ER。还表明,一种在体内有效的增敏剂在其对单细胞的ER和对球体的ER之间几乎没有差异。