Fast Monte Carlo simulation of DNA damage induction by Auger-electron emission

被引:21
作者
Hsiao, Ya-Yun [1 ]
Hung, Tzu-Hsiang [1 ]
Tu, Shu-Ju [2 ]
Tung, Chuan-Jong [2 ,3 ]
机构
[1] Chung Shan Med Univ, Dept Med Imaging & Radiol Sci, Taichung, Taiwan
[2] Chang Gung Univ, Coll Med, Dept Med Imaging & Radiol Sci, Kweishan, Taiwan
[3] Chang Gung Univ, Inst Radiol Res, Kweishan, Taiwan
关键词
Auger electron; DNA damage; local damage model; PENELOPE; MCDS; RELATIVE BIOLOGICAL EFFECTIVENESS; EMITTING RADIOTHERAPEUTIC AGENT; LOW-ENERGY ELECTRONS; BREAST-CANCER CELLS; IN-VITRO; RADIONUCLIDE THERAPY; CELLULAR DOSIMETRY; S-VALUES; RADIATION; EMITTERS;
D O I
10.3109/09553002.2014.892649
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Purpose: A local damage model (LDM) was developed to estimate the biological efficiency of Auger-electron-emitting radionuclides. Materials and methods: The LDM required information on the local dose distribution, local energy spectrum, and clustered DNA damage yields in the cell nucleus. To apply the model, the nucleus was divided into concentric shells where each shell contributed its own local dose, energy spectrum, and damage yield. The local doses and energy spectra were computed using the PENELOPE (PENetration and Energy LOss of Positrons and Electrons) code. The DNA damage yields were estimated using the MCDS (Monte Carlo damage simulation) code. Results: For a typical 4-mu m radius mammalian cell nucleus, the absorbed doses to the cell nucleus per unit cumulated activity, equal to 0.0065, 0.00418, 0.0028, 0.0027 and 0.0015 Gy Bq(-1) s(-1) for I-125, Sb-119, I-123, In-111 and Tc-99m, were within 6% difference with the MIRD (Medical Internal Radiation Dose) published data. The simulated total (simple and complex) single-strand break (SSB) and double-strand break (DSB) yields were in the same order, i. e., I-125 > Sb-119 > I-123 > In-111 > Tc-99m. The agreement between present results and literature data for the DNA damage yields was generally good. More than 75% of the total SSB and DSB yields were contributed from regions within 2.5 mu m of the nucleus center. Conclusions: The proposed methodology was computationally efficient and could be applied to other irradiation geometries such as cell clusters.
引用
收藏
页码:392 / 400
页数:9
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