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辐射生物学中的修复过程。

Repair processes in radiation biology.

作者信息

Elkind M M

出版信息

Radiat Res. 1984 Dec;100(3):425-49.

PMID:6390488
Abstract

Three dualities underscore the role of repair in radiobiology: the discrete and random nature of energy deposition; the coupled processes of damage and repair; and the harmful and beneficial properties of radiation in connection with issues of public health and the radiation therapy of cancer, respectively. Starting with the survival curve of HeLa S3 cells, published by T. T. Puck and P. I. Marcus [J. Exp. Med. 103, 653-666 (1956)], the survival response of repair-competent mammalian cells is discussed and is related to clinical experience. This is followed by an examination of DNA repair in surviving cells from which it is inferred that even in repair-deficient cells, very likely large numbers of single- and double-strand DNA breaks are repaired because the progeny of surviving cells are essentially free of such damage. These observations support the idea that even when single-hit dose-effect relationships are involved (e.g., survival of ataxia telangiectasia cells), repair processes may play a role. Lastly, single-hit kinetics connected with the induction of neoplastic transformation are discussed. The data demonstrate that linear dose-response dependencies due to ionizing radiation (i.e., gamma rays and fission-spectrum neutrons) can be modulated by dose protraction, but that neither the direction nor the extent of such modulations can be predicted on theoretical grounds. To be applied more effectively for the benefit of mankind, therefore, it remains necessary to understand fully the biological mechanisms of the action of ionizing radiation.

摘要

三种二元性突出了修复在放射生物学中的作用

能量沉积的离散性和随机性;损伤与修复的耦合过程;以及辐射分别与公共卫生问题和癌症放射治疗相关的有害和有益特性。从T. T. 帕克和P. I. 马库斯发表的HeLa S3细胞存活曲线[《实验医学杂志》103, 653 - 666 (1956)]开始,讨论了具有修复能力的哺乳动物细胞的存活反应,并将其与临床经验相关联。接下来检查存活细胞中的DNA修复,由此推断即使在缺乏修复能力的细胞中,很可能大量的单链和双链DNA断裂也会被修复,因为存活细胞的后代基本上没有此类损伤。这些观察结果支持了这样一种观点,即即使涉及单击剂量效应关系(例如共济失调毛细血管扩张症细胞的存活),修复过程也可能起作用。最后,讨论了与肿瘤转化诱导相关的单击动力学。数据表明,电离辐射(即γ射线和裂变谱中子)引起的线性剂量反应依赖性可以通过剂量延长来调节,但这种调节的方向和程度都无法基于理论依据进行预测。因此,为了更有效地造福人类,仍然有必要充分了解电离辐射作用的生物学机制。

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