Center for Environmental and Health Sciences, Hokkaido University, N12 W7 Kita-ku, Sapporo 060-0812, Japan.
Institute for Quantum Life Science, National Institutes for Quantum Science and Technology, 2-4 Shirakata, Tokai 319-1106, Japan.
Int J Mol Sci. 2021 Nov 26;22(23):12785. doi: 10.3390/ijms222312785.
The non-targeted effects of radiation have been known to induce significant alternations in cell survival. Although the effects might govern the progression of tumor sites following advanced radiotherapy, the impacts on the intercellular control of the cell cycle following radiation exposure with a modified field, remain to be determined. Recently, a fluorescent ubiquitination-based cell-cycle indicator (FUCCI), which can visualize the cell-cycle phases with fluorescence microscopy in real time, was developed for biological cell research. In this study, we investigated the non-targeted effects on the regulation of the cell cycle of human cervical carcinoma (HeLa) cells with imperfect p53 function that express the FUCCI (HeLa-FUCCI cells). The possible effects on the cell-cycle phases via soluble factors were analyzed following exposure to different field configurations, which were delivered using a 150 kVp X-ray irradiator. In addition, using synchrotron-generated, 5.35 keV monochromatic X-ray microbeams, high-precision 200 μm-slit microbeam irradiation was performed to investigate the possible impacts on the cell-cycle phases via cell-cell contacts. Collectively, we could not detect the intercellular regulation of the cell cycle in HeLa-FUCCI cells, which suggested that the unregulated cell growth was a malignant tumor. Our findings indicated that there was no significant intercellular control system of the cell cycle in malignant tumors during or after radiotherapy, highlighting the differences between normal tissue and tumor characteristics.
辐射的非靶向效应已被证实会导致细胞存活发生显著改变。虽然这些效应可能会影响先进放疗后肿瘤部位的进展,但辐射暴露后,经过改良的场域对细胞周期的细胞间控制的影响仍有待确定。最近,开发了一种基于荧光泛素化的细胞周期指示剂 (FUCCI),可通过荧光显微镜实时可视化细胞周期的各个阶段,用于生物学细胞研究。在这项研究中,我们研究了不完美 p53 功能的人宫颈癌 (HeLa) 细胞中细胞周期的非靶向效应,这些细胞表达 FUCCI(HeLa-FUCCI 细胞)。通过分析暴露于不同场域构型后细胞周期各阶段的可溶性因子,探讨了其对细胞周期的可能影响,这些场域是使用 150 kVp X 射线辐照器产生的。此外,还使用同步加速器产生的 5.35 keV 单色 X 射线微束进行了高精度 200 μm 狭缝微束照射,以研究细胞-细胞接触对细胞周期各阶段的可能影响。总的来说,我们无法检测到 HeLa-FUCCI 细胞中细胞周期的细胞间调节,这表明不受调节的细胞生长是恶性肿瘤的特征。我们的研究结果表明,在放疗期间或之后,恶性肿瘤中没有明显的细胞周期的细胞间控制系统,突出了正常组织和肿瘤特征之间的差异。