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首页> 外文期刊>Journal of Radiation Research: Official Organ of the Japan Radiation Research Society >Potential lethal damage repair in glioblastoma cells irradiated with ion beams of various types and levels of linear energy transfer
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Potential lethal damage repair in glioblastoma cells irradiated with ion beams of various types and levels of linear energy transfer

机译:用各种类型的离子束照射的胶质母细胞瘤细胞中的潜在致命损伤修复和线性能量转移水平的

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Glioblastoma (GBM), a Grade IV brain tumour, is a well-known radioresistant cancer. To investigate one of the causes of radioresistance, we studied the capacity for potential lethal damage repair (PLDR) of three altered strains of GBM: T98G, U87 and LN18, irradiated with various ions and various levels of linear energy transfer (LET). The GBM cells were exposed to C-12 and Si-28 ion beams with LETs of 55, 100 and 200 keV/m, and with X-ray beams of 1.7 keV/m. Mono-energetic C-12 ions and Si-28 ions were generated by the Heavy Ion Medical Accelerator at the National Institute of Radiological Science, Chiba, Japan. Clonogenic assays were used to determine cell inactivation. The ability of the cells to repair potential lethal damage was demonstrated by allowing one identical set of irradiated cells to repair for 24 h before subplating. The results show there is definite PLDR with X-rays, some evidence of PLDR at 55 keV/m, and minimal PLDR at 100 keV/m. There is no observable PLDR at 200 keV/m. This is the first study, to the authors' knowledge, demonstrating the capability of GBM cells to repair potential lethal damage following charged ion irradiations. It is concluded that a GBM's PLDR is dependent on LET, dose and GBM strain; and the more radioresistant the cell strain, the greater the PLDR.
机译:胶质母细胞瘤(GBM),Ⅰ级脑肿瘤,是一种众所周知的放射性癌症。为了探讨辐射频率的原因之一,我们研究了三种改变的GBM改变菌株的致命损伤修复(PLDR)的能力:T98G,U87和LN18,用各种离子和各种水平的线性能量转移(Let)。将GBM细胞暴露于C-12和Si-28离子束,允许的允许为55,100和200keV / m,以及1.7keV / m的X射线束。 Mono-Energetic C-12离子和Si-28离子是由国立放射科学研究所,千叶,日本千叶山区的重离子医疗加速器产生。用于确定细胞灭活的克隆因测定。通过在铺设之前将一组相同的辐照细胞进行修复24小时,通过允许一种相同的辐照细胞来证明细胞修复潜在致死损伤的能力。结果表明,X射线有明确的PLDR,有些证据是55 kev / m的PLDR,最小的PLDR在100 kev / m。 200 kev / m没有可观察的PLDR。这是第一次研究,给了作者的知识,证明了GBM细胞的能力,以在带电离子照射后修复潜在的致命损伤。结论是,GBM的PLDR依赖于让剂量和GBM菌株;并且细胞菌株越多,PLDR越大。

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