A nanodosimetric model of radiation-induced clustered DNA damage yields

被引:65
作者
Garty, G. [1 ]
Schulte, R. [2 ]
Shchemelinin, S. [1 ]
Leloup, C. [1 ]
Assaf, G. [1 ]
Breskin, A. [1 ]
Chechik, R. [1 ]
Bashkirov, V. [2 ]
Milligan, J. [3 ]
Grosswendt, B. [4 ]
机构
[1] Weizmann Inst Sci, Dept Particle Phys, IL-76100 Rehovot, Israel
[2] Loma Linda Univ, Med Ctr, Dept Radiat Med, Loma Linda, CA 92354 USA
[3] Univ Calif San Diego, Dept Radiol, La Jolla, CA 92093 USA
[4] Phys Tech Bundesanstalt, D-38116 Braunschweig, Germany
关键词
MONTE-CARLO-SIMULATION; ALPHA-PARTICLES; IONIZING-RADIATION; NANOMETRIC VOLUMES; PLASMID DNA; CHARGED-PARTICLES; MAMMALIAN-CELLS; SENSITIVE SITES; TRACK STRUCTURE; CROSS-SECTIONS;
D O I
10.1088/0031-9155/55/3/015
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
We present a nanodosimetric model for predicting the yield of double strand breaks (DSBs) and non-DSB clustered damages induced in irradiated DNA. The model uses experimental ionization cluster size distributions measured in a gas model by an ion counting nanodosimeter or, alternatively, distributions simulated by a Monte Carlo track structure code developed to simulate the nanodosimeter. The model is based on a straightforward combinatorial approach translating ionizations, as measured or simulated in a sensitive gas volume, to lesions in a DNA segment of one-two helical turns considered equivalent to the sensitive volume of the nanodosimeter. The two model parameters, corresponding to the probability that a single ion detected by the nanodosimeter corresponds to a single strand break or a single lesion (strand break or base damage) in the equivalent DNA segment, were tuned by fitting the model-predicted yields to previously measured double-strand break and double-strand lesion yields in plasmid DNA irradiated with protons and helium nuclei. Model predictions were also compared to both yield data simulated by the PARTRAC code for protons of a wide range of different energies and experimental DSB and non-DSB clustered DNA damage yield data from the literature. The applicability and limitations of this model in predicting the LET dependence of clustered DNA damage yields are discussed.
引用
收藏
页码:761 / 781
页数:21
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