溶液中DNA的直接电离。

J H Miller, W E Wilson, R H Ritchie
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引用次数: 7

摘要

细胞核从辐射场中吸收的大部分能量都进入了大分子(如DNA)周围的水介质,这些大分子对细胞的正常功能至关重要。这部分能量沉积会产生大量的活性物质,这些活性物质可以扩散到DNA序列并引起化学变化。介导这种间接模式DNA损伤的自由基的平均扩散距离只有几纳米,因为细胞介质中含有高浓度的分子,可以迅速清除辐射诱导的物种。在这些条件下,辐射场与DNA的直接相互作用是一种不可忽视的潜在损伤诱导模式。本文将讨论直接效应的两个方面:(1)通过水介质的介电响应筛选DNA与带电粒子之间的相互作用;(2)这些相互作用的影响参数依赖性。
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Direct ionization of DNA in solution.

Most of the energy absorbed in the cell nucleus from a radiation field goes into the aqueous medium that surrounds macromolecules, like DNA, which are critical to the normal function of cells. This part of the energy deposition produces numerous reactive species that can diffuse to DNA sequences and induce chemical changes. The average diffusion distance of the free radicals that mediate this indirect mode of DNA damage is only a few nanometers because the cellular medium contains a high concentration of molecules that rapidly scavenge the radiation-induced species. Under these conditions, direct interaction of the radiation field with the DNA can not be neglected as a potential mode of damage induction. Two aspects of the direct effect will be discussed in this paper: (1) screening of the interaction between DNA and charged particles by the dielectric response of the aqueous medium and (2) the impact-parameter dependence of these interactions.

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