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Damage propagation in complex biological systems following exposure to low doses of ionising radiation

机译:暴露于低剂量的电离辐射后,复杂生物系统中的伤害传播

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摘要

Biological organisms present hierarchical levels of organisation capable of maintaining homeostasis at low-level perturbations through intricate signalling between cells. Ionising radiation may damage DNA and other molecular components. This primary risk rises linearly with dose over a certain dose range. A second risk describes the probability of the initial DNA and other damage to propagate in the body to cause disease, such as cancer. The homeostatic control of the second risk does not function in a linear fashion. Moreover, low-dose irradiation may adaptively up-regulate protective responses at different organisational levels genetically controlled. Such adaptive protections (APs) usually defend also against the inevitable abundant non-radiogenic perturbations. Below ≈ 0.1 Gy, APs are potentially beneficial in outweighing the consequences of the relatively rare radiogenic damage at low doses. The balance between health risk and benefit of low-level irradiation of an individual may become predictable by gene-expression profiles also for eventually treating disease.
机译:生物有机体通过能够在细胞之间进行复杂的信号传递,从而在低水平的扰动下保持体内稳态的组织层次结构。电离辐射可能会损坏DNA和其他分子成分。在一定剂量范围内,主要风险随剂量线性增加。第二种风险描述了初始DNA和其他损害在体内传播以引起疾病(例如癌症)的可能性。第二风险的稳态控制并非以线性方式起作用。此外,低剂量照射可在基因控制的不同组织水平上自适应上调保护反应。此类自适应保护(AP)通常还可以防御不可避免的大量非放射源干扰。低于≈0.1 Gy,AP在抵消低剂量下相对罕见的放射致害的后果方面可能具有优势。个体的低水平照射所带来的健康风险与收益之间的平衡,也可以通过基因表达谱来预测,也可以最终用于治疗疾病。

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