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Radiation-induced unrepairable DSBs: their role in the late effects of radiation and possible applications to biodosimetry

机译:辐射引起的不可修复的DSB:它们在辐射后期效应中的作用以及可能的生物剂量学应用

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摘要

Although the vast majority of DNA damage induced by radiation exposure disappears rapidly, some lesions remain in the cell nucleus in very small quantities for days to months. These lesions may cause a considerable threat to an organism and include certain types of DNA double-strand breaks (DSBs) called ‘unrepairable DSBs’. Unrepairable DSBs are thought to cause persistent malfunctioning of cells and tissues or cause late effects of radiation, especially the induction of delayed cell death, mutation, senescence, or carcinogenesis. Moreover, the measurement of unrepairable DSBs could potentially be used for retrospective biodosimetry or for identifying individuals at greater risk for developing the adverse effects associated with radiotherapy or chemotherapy. This review summarizes the concept of unrepairable DSBs in the context of persistent repair foci formed at DSBs.
机译:尽管由辐射暴露引起的绝大多数DNA损伤迅速消失,但某些损伤会以极少量的形式保留在细胞核中数天至数月。这些损伤可能会对生物体造成相当大的威胁,并包括某些类型的DNA双链断裂(DSB),称为“不可修复的DSB”。人们认为,不可修复的DSB会引起细胞和组织的持续故障或引起放射的后期影响,尤其是诱导延迟的细胞死亡,突变,衰老或致癌作用。此外,无法修复的DSB的测量可能会用于回顾性生物剂量测定,或用于确定有更大风险发展与放疗或化疗相关的不良反应的个体。这篇综述总结了在DSB形成的永久性修复灶的情况下不可修复的DSB的概念。

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