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关于电离辐射导致染色体畸变的形成机制

On the mechanism of the formation of chromosomal aberrations by ionising radiation.

作者信息

Edwards A A, Moiseenko V V, Nikjoo H

机构信息

NRPB, Chilton, Didcot, UK.

出版信息

Radiat Environ Biophys. 1996 Feb;35(1):25-30. doi: 10.1007/BF01211239.

Abstract

The results of applying a biophysical model to describe the production of chromosomal aberrations in human lymphocytes are presented. The model describes energy deposition in cell nuclei, the conversion to DNA double-strand breaks, and the repair and misrepair of those breaks to form aberrations. The repair and misrepair of double-strand breaks are expressed as a competition process based on the concept that the probability of exchange depends upon the spatial separation of the breaks. Results are restricted to photon irradiations. We show that the model leads to the familiar linear-quadratic equation for the dependence of exchange aberration yield on dose. Exchanges between two DNA breaks along the same track determine the linear term, and exchanges between those in different tracks determine the quadratic term. We demonstrate the importance of electron track structure in the prediction of the linear term and show that the low-dose RBE between x- and gamma-rays depends not only on the physical description of the track but also the biological repair function. For intratrack exchanges, we show that the double-strand breaks are very close, on average about 30 nm apart. For intertrack exchanges, the mean separation of breaks is calculated to be about 2 mu m. There is a clear separation of the two modes of action. In addition, the increased effectiveness of the track ends of electrons is shown.

摘要

本文展示了应用生物物理模型描述人类淋巴细胞中染色体畸变产生情况的结果。该模型描述了细胞核中的能量沉积、向DNA双链断裂的转化,以及这些断裂的修复和错误修复以形成畸变的过程。双链断裂的修复和错误修复被表示为一个竞争过程,其基于交换概率取决于断裂空间分离的概念。结果仅限于光子辐照。我们表明,该模型得出了关于交换畸变产额与剂量依赖关系的常见线性二次方程。同一径迹上两个DNA断裂之间的交换决定了线性项,不同径迹上的断裂之间的交换决定了二次项。我们证明了电子径迹结构在预测线性项中的重要性,并表明X射线和γ射线之间的低剂量相对生物效应不仅取决于径迹的物理描述,还取决于生物修复功能。对于径迹内交换,我们表明双链断裂非常接近,平均间距约为30纳米。对于径迹间交换,计算得出断裂的平均间距约为2微米。两种作用模式有明显区分。此外,还展示了电子径迹末端的有效性增加。

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