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Cytogenetic Damage in Cells Exposed to Ionizing Radiation under Conditions of a Changing Dose Rate

机译:剂量率变化条件下暴露于电离辐射的细胞的细胞遗传学损伤

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摘要

The current international paradigm on the biological effects of radiation is based mainly on the effects of dose with some consideration for the dose rate. No allowance has been made for the potential influence of a changing dose rate (second derivative of dose), and the biological effects of exposing cells to changing dose rates have never been analyzed. This paper provides evidence that radiation effects in cells may depend on temporal changes in the dose rate. In these experiments, cells were moved toward or away from an X-ray source. The speed of movement, the time of irradiation, and the temperature during exposure were controlled. Here we report the results of the first experiments with TK6 cells that were exposed at a constant dose rate, at an increasing dose rate, or at a decreasing dose rate. The average dose rate and the total dose were same for all samples. Micronuclei were scored as the end point. The results show that the level of cytogenetic damage was higher in cells exposed to a decreasing dose rate compared to both an increasing and a constant dose rate. This finding may suggest that the second derivative of dose may influence radiation risk estimates, and the results should trigger further studies on this issue.
机译:当前关于辐射的生物效应的国际范例主要基于剂量的影响,并考虑了剂量率。没有考虑到剂量率变化(剂量的二阶导数)的潜在影响,并且从未分析过将细胞暴露于剂量率变化的生物学效应。本文提供了证据,证明细胞中的辐射效应可能取决于剂量率的时间变化。在这些实验中,细胞移向X射线源或移离X射线源。控制移动速度,照射时间和曝光期间的温度。在这里,我们报告了以恒定剂量率,增加剂量率或减少剂量率暴露的TK6细胞的首次实验结果。所有样品的平均剂量率和总剂量均相同。将微核记为终点。结果表明,与增加剂量率和恒定剂量率相比,暴露于降低剂量率的细胞的细胞遗传损伤水平更高。这一发现可能表明剂量的二阶导数可能会影响辐射风险估计,并且该结果应引发对该问题的进一步研究。

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