首页> 外文期刊>Journal of radiological protection: Official journal of the Society for Radiological Protection >Comparison of in vivo translocation frequencies with in vitro G(2) radiosensitivity in radiation workers occupationally exposed to external radiation
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Comparison of in vivo translocation frequencies with in vitro G(2) radiosensitivity in radiation workers occupationally exposed to external radiation

机译:体内易位频率与体外暴露于辐射的辐射工人的体外G(2)放射敏感性的比较

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A group of retired workers from the British Nuclear Fuels plc facility at Sellafield who had been studied for in vivo translocation frequencies in blood lymphocytes were resampled and analysed for in vitro chromosomal radiosensitivity. Significant variation in response to a dose of 0.5 Gy given at the G(2) stage of the cell cycle was observed between individuals (P < 0.001). In a regression analysis that included age, cumulative occupational radiation dose and in vitro G(2) radiation-induced aberration frequencies as independent variables, only cumulative occupational radiation dose had a significant influence on chromosomal translocation frequency (P = 0.0036). G(2) in vitro radiosensitivity is assumed to be a marker for genetic polymorphic variation in DNA damage recognition and repair genes. Therefore, since in vivo translocation frequencies can be considered a surrogate for cancer risk, this lack of association with G(2) in vitro radiosensitivity suggests that such genetic variation has no impact on the response to low dose chronic exposure.
机译:对一组来自塞拉菲尔德(Sellafield)英国核燃料公司(British Nuclear Fuels plc)设施的退休工人进行了抽样,并对其血淋巴细胞的体内易位频率进行了研究,并进行了体外染色体放射敏感性分析。个体之间观察到在细胞周期的G(2)阶段对0.5 Gy剂量的应答有显着变化(P <0.001)。在包括年龄,累积职业辐射剂量和体外G(2)辐射引起的像差频率作为自变量的回归分析中,仅累积职业辐射剂量对染色体易位频率有显着影响(P = 0.0036)。 G(2)体外放射敏感性被认为是DNA损伤识别和修复基因的遗传多态变异的标志。因此,由于体内易位频率可以被认为是癌症风险的替代物,因此与G(2)体外放射敏感性的缺乏联系表明这种遗传变异对低剂量慢性暴露的反应没有影响。

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