Time-lapse imaging of cells in spatially fractionated X-ray fields using a mini beam as an alternative to accelerator-based sub-millimeter beams.

IF 2 4区 医学 Q2 BIOLOGY
Kiichi Kaminaga, Hisanori Fukunaga, Eri Hirose, Ritsuko Watanabe, Keiji Suzuki, Kevin M Prise, Akinari Yokoya
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引用次数: 0

Abstract

Due to the limited number of accelerator-based X-ray facilities worldwide that provide beams with an adjustable size, their application for radiobiological research purposes has been restricted. Thus, the development of alternative methods is of technical importance for investigating cell/tissue responses in spatially non-uniform radiation fields. In this study, we performed mini beam irradiation of cells using a lead (Pb) sub-milli-collimator as an alternative method to sub-millimeter beams. Also, we employed human cervical carcinoma HeLa cells and hTERT-immortalized fibroblast BJ-1 cells that express fluorescence ubiquitination-based cell-cycle indicators (FUCCI). Time-lapse imaging revealed differences in the behavior of HeLa and BJ-1 cells in spatially heterogeneous radiation fields; in the case of HeLa cells, G2/M phase-arrested cells in the cell population were clearly observed, distinguishing irradiated from non-irradiated cells at the sub-millimeter scale level. Our findings indicate that FUCCI can be useful as a biological dose indicator, depending on cell type, and Pb sub-milli-collimators show potential as a possible alternative to accelerator-based X-ray sub-millimeter beams for radiobiological research. The use of the collimators, unlike beamtime experiments in synchrotron facilities with the approval of the committee, is highly versatile and may be beneficial in preliminary studies in a normal laboratory environment.

在空间分割的x射线场中,使用微型光束替代基于加速器的亚毫米光束对细胞进行延时成像。
由于世界范围内能够提供可调节光束大小的基于加速器的x射线设备数量有限,它们在放射生物学研究中的应用受到了限制。因此,开发替代方法对于研究细胞/组织在空间非均匀辐射场中的反应具有重要的技术意义。在这项研究中,我们使用铅(Pb)亚毫米波准直器作为亚毫米波的替代方法对细胞进行了微束照射。此外,我们还使用了表达荧光泛素化细胞周期指标(FUCCI)的人宫颈癌HeLa细胞和htert永生化成纤维细胞BJ-1细胞。延时成像显示HeLa和BJ-1细胞在空间异质辐射场中的行为差异;在HeLa细胞的情况下,可以清楚地观察到细胞群中的G2/M相阻滞细胞,在亚毫米尺度上区分辐照细胞和未辐照细胞。我们的研究结果表明,FUCCI可以作为一种有用的生物剂量指示器,这取决于细胞类型,Pb亚毫米波准直器显示出潜在的潜力,可以替代基于加速器的x射线亚毫米波,用于放射生物学研究。准直器的使用,与委员会批准的同步加速器设施的光束时间实验不同,是高度通用的,并且可能有利于在正常实验室环境中的初步研究。
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来源期刊
CiteScore
3.60
自引率
5.00%
发文量
86
审稿时长
4-8 weeks
期刊介绍: The Journal of Radiation Research (JRR) is an official journal of The Japanese Radiation Research Society (JRRS), and the Japanese Society for Radiation Oncology (JASTRO). Since its launch in 1960 as the official journal of the JRRS, the journal has published scientific articles in radiation science in biology, chemistry, physics, epidemiology, and environmental sciences. JRR broadened its scope to include oncology in 2009, when JASTRO partnered with the JRRS to publish the journal. Articles considered fall into two broad categories: Oncology & Medicine - including all aspects of research with patients that impacts on the treatment of cancer using radiation. Papers which cover related radiation therapies, radiation dosimetry, and those describing the basis for treatment methods including techniques, are also welcomed. Clinical case reports are not acceptable. Radiation Research - basic science studies of radiation effects on livings in the area of physics, chemistry, biology, epidemiology and environmental sciences. Please be advised that JRR does not accept any papers of pure physics or chemistry. The journal is bimonthly, and is edited and published by the JRR Editorial Committee.
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