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Adaptive and Bystander Responses in Human and Rodent Cell Cultures Exposed to Low Level Ionizing Radiation: The Impact of Linear Energy Transfer

机译:暴露于低水平电离辐射的人类和啮齿动物细胞培养物中的适应性反应和旁观者反应:线性能量转移的影响

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摘要

To understand the potential impact on risk from exposure to low-level ionizing radiation, we have investigated the modulation of gene expression, induction of DNA damage and of neoplastic transformation in human or rodent cells derived from cultures exposed in vitro to low dose γ-rays (a low linear energy transfer radiation) or very low fluences of α-particles (a high linear energy transfer radiation). Pre-exposure of cells to a low γ-ray dose protected cells from the DNA damaging and killing effects induced by a subsequent acute challenge exposure to γ-rays. Furthermore, a low dose chronic exposure to γ-rays decreased the frequency of micronucleus formation and neoplastic transformation to a level below the spontaneous rate in human and rodent cells respectively. In contrast, when cell cultures were exposed to low fluences of α-particles, wherein a small fraction of cells were irradiated, stressful effects were transmitted from the irradiated to adjoining nonirradiated bystander cells. The mechanisms underlying these effects and their relative contribution to the overall risk to ionizing radiation is discussed.
机译:为了了解暴露于低水平电离辐射对风险的潜在影响,我们研究了人类或啮齿动物细胞中基因表达的诱导作用,DNA损伤的诱导以及体外暴露于低剂量γ射线培养物中的啮齿动物肿瘤的转化(低线性能量转移辐射)或非常低的α粒子注量(高线性能量转移辐射)。将细胞预先暴露于低γ射线剂量可保护细胞免受随后的急性暴露于γ射线引起的DNA破坏和杀伤作用。此外,低剂量长期暴露于γ射线会使人和啮齿动物细胞中微核形成和赘生性转化的频率分别降低到低于自发率的水平。相反,当将细胞培养物暴露于低通量的α粒子(其中辐照了小部分细胞)时,从辐照到相邻的未辐照旁观者细胞会传递应激效应。讨论了这些效应的潜在机理及其​​对电离辐射总体风险的相对影响。

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