电离辐射下生物分子的第一性原理模拟。

IF 11.7 1区 化学 Q1 CHEMISTRY, PHYSICAL
Karwan Ali Omar, Karim Hasnaoui, Aurélien de la Lande
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引用次数: 12

摘要

电离射线对基因组、蛋白质和通常调节细胞活动的信号通路造成损害,带来有害的后果,如加速衰老、肿瘤和癌症,但在放射治疗的背景下也有有益的影响。虽然20世纪的巨大研究步伐导致了对生物大分子构建块的化学损伤的分子机制的识别,但最近二十年带来了新的问题,例如,关于簇状损伤的形成或涉及辐射分解产生的二次电子的丰富化学。辐射化学现在正与第二科学相遇,为揭示生物物质辐射分解的最初阶段提供了非凡的机会。本文综述了这一方向的最新进展,主要集中在atto- to- to- to-皮秒时间尺度上。我们回顾了时变密度泛函理论在这方面的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
First-Principles Simulations of Biological Molecules Subjected to Ionizing Radiation.

Ionizing rays cause damage to genomes, proteins, and signaling pathways that normally regulate cell activity, with harmful consequences such as accelerated aging, tumors, and cancers but also with beneficial effects in the context of radiotherapies. While the great pace of research in the twentieth century led to the identification of the molecular mechanisms for chemical lesions on the building blocks of biomacromolecules, the last two decades have brought renewed questions, for example, regarding the formation of clustered damage or the rich chemistry involving the secondary electrons produced by radiolysis. Radiation chemistry is now meeting attosecond science, providing extraordinary opportunities to unravel the very first stages of biological matter radiolysis. This review provides an overview of the recent progress made in this direction, focusing mainly on the atto- to femto- to picosecond timescales. We review promising applications of time-dependent density functional theory in this context.

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来源期刊
CiteScore
28.00
自引率
0.00%
发文量
21
期刊介绍: The Annual Review of Physical Chemistry has been published since 1950 and is a comprehensive resource for significant advancements in the field. It encompasses various sub-disciplines such as biophysical chemistry, chemical kinetics, colloids, electrochemistry, geochemistry and cosmochemistry, chemistry of the atmosphere and climate, laser chemistry and ultrafast processes, the liquid state, magnetic resonance, physical organic chemistry, polymers and macromolecules, and others.
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