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基于超短电子束的时空辐射生物学与放射治疗。

Ultra-short electron beams based spatio-temporal radiation biology and radiotherapy.

机构信息

Laboratoire d'Optique Appliquée-CNRS UMR 7639, Ecole Nationale Supérieure des Techniques Avancées, Ecole Polytechnique, 91761 Palaiseau, France.

出版信息

Mutat Res. 2010 Apr-Jun;704(1-3):142-51. doi: 10.1016/j.mrrev.2010.01.006. Epub 2010 Jan 15.

Abstract

Deeply understanding the basic mechanisms of radiation damage in vitro and on living cells, starting from the early radical and molecular processes to mutagenic DNA lesions, cell signalling, genomic instability, apoptosis, microenvironment and Bystander effects, radio sensitivity should have many practical consequences such as the customization of cancer radiotherapy or radioprotection protocols. In this context, innovative laser-plasma accelerators provide ultra-short particle beams (electrons, protons) with parameters of interest for radiation biology and medical physics. This review article approaches some complex links that exist between radiation physics of new pulsed irradiation sources and potential biomedical applications. These links concern mainly the understanding of spatio-temporal events triggered by a radiation, within a fluctuating lapse of time from the initial energy deposition to primary damages of biological interest.

摘要

深入了解体外和活细胞中辐射损伤的基本机制,从早期的自由基和分子过程到致突变的 DNA 损伤、细胞信号转导、基因组不稳定性、细胞凋亡、微环境和旁观者效应,放射敏感性应该有许多实际后果,例如定制癌症放射治疗或放射防护方案。在这种情况下,创新的激光等离子体加速器提供了具有辐射生物学和医学物理学感兴趣参数的超短粒子束(电子、质子)。本文综述了新型脉冲辐照源的辐射物理与潜在的生物医学应用之间存在的一些复杂联系。这些联系主要涉及理解辐射引发的时空事件,其时间范围从初始能量沉积到生物相关的初级损伤是波动的。

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