The quality of DNA double-strand breaks: A Monte Carlo simulation of the end-structure of strand breaks produced by protons and alpha particles
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Marco Durante | M. Merzagora | H. G. Paretzke | W. E. Wilson | H. Paretzke | A. Ottolenghi | Alberto Ottolenghi | L. Tallone | M. Durante | L. Tallone | M. Merzagora | Alberto Ottolenghi | Marco Durante
[1] D. Blöcher. DNA double strand breaks in Ehrlich ascites tumour cells at low doses of x-rays. I. Determination of induced breaks by centrifugation at reduced speed. , 1982, International journal of radiation biology and related studies in physics, chemistry, and medicine.
[2] M. Frankenberg-Schwager. Induction, repair and biological relevance of radiation-induced DNA lesions in eukaryotic cells , 1990, Radiation and environmental biophysics.
[3] P. Bryant. Restriction Endonuclease- and Radiation-Induced DNA Double-Strand Breaks and Chromosomal Aberrations: Similarities and Differences , 1990 .
[4] E. Blakely,et al. Heavy-ion effects on mammalian cells: inactivation measurements with different cell lines. , 1985, Radiation research. Supplement.
[5] H. Dertinger,et al. The DNA content of some mammalian cells measured by flow cytometry and its influence on radiation sensitivity. , 1990, International journal of radiation biology.
[6] M Pugliese,et al. Inactivation of C3H 10T1/2 cells by monoenergetic high LET alpha-particles. , 1992, International journal of radiation biology.
[7] A. Peacocke,et al. The influence of radiation quality and oxygen on strand breakage in dry DNA. , 1970, International journal of radiation biology and related studies in physics, chemistry, and medicine.
[8] M. Frankenberg-Schwager,et al. Evidence for DNA double-strand breaks as the critical lesions in yeast cells irradiated with sparsely or densely ionizing radiation under oxic or anoxic conditions. , 1981, Radiation research.
[9] E. Bothe,et al. Single- and double-strand break formation in DNA irradiated in aqueous solution: dependence on dose and OH radical scavenger concentration. , 1987, Radiation research.
[10] D. Bance,et al. Further data on DNA strand breakage by various radiation qualities. , 1972, International journal of radiation biology and related studies in physics, chemistry, and medicine.
[11] V. Michalik. Model of DNA damage induced by radiations of various qualities. , 1992, International journal of radiation biology.
[12] J. Kiefer. Heavy ion effects on cells: Chromosomal aberrations, mutations and neoplastic transformations , 1992, Radiation and Environmental Biophysics.
[13] F Ianzini,et al. DNA double-strand breaks induced by low energy protons in V79 cells. , 1994, International journal of radiation biology.
[14] D. Charlton,et al. A method of calculating initial DNA strand breakage following the decay of incorporated 125I. , 1988, International journal of radiation biology and related studies in physics, chemistry, and medicine.
[15] P. O'Neill,et al. Induction and rejoining of DNA double-strand breaks in V79-4 mammalian cells following gamma- and alpha-irradiation. , 1993, International journal of radiation biology.
[16] H Nikjoo,et al. Calculation of initial yields of single- and double-strand breaks in cell nuclei from electrons, protons and alpha particles. , 1989, International journal of radiation biology.
[17] G. Barendsen. IMPAIRMENT OF THE PROLIFERATIVE CAPACITY OF HUMAN CELLS IN CULTURE BY ALPHA-PARTICLES WITH DIFFERING LINEAR-ENERGY TRANSFER. , 1964, International journal of radiation biology and related studies in physics, chemistry, and medicine.
[18] U. Hagen. Mechanisms of induction and repair of DNA double-strand breaks by ionizing radiation: Some contradictions , 1994, Radiation and environmental biophysics.
[19] F Ianzini,et al. Direct comparison of biological effectiveness of protons and alpha-particles of the same LET. III. Initial yield of DNA double-strand breaks in V79 cells. , 1992, International journal of radiation biology.
[20] D. Charlton. ENERGY DEPOSITION IN SUB-MICROSCOPIC VOLUMES , 1992 .
[21] C. Tobias,et al. Neoplastic cell transformation by high-LET radiation: molecular mechanisms. , 1989, Advances in space research : the official journal of the Committee on Space Research.
[22] Detlef Blöcher,et al. DNA Double-strand Break Repair Determines the RBE of α-particles , 1988 .
[23] M. Cornforth,et al. The dose-dependent fragmentation of chromatin in human fibroblasts by 3.5-MeV alpha particles from 238Pu: experimental and theoretical considerations pertaining to single-track effects. , 1991, Radiation research.
[24] P. Bryant,et al. Restriction-endonuclease-induced DNA double-strand breaks and chromosomal aberrations in mammalian cells. , 1993, Mutation research.
[25] M. Durante,et al. Repair of potentially lethal damage by introduction of T4 DNA ligase in eucaryotic cells. , 1991, International journal of radiation biology.
[26] G. Kraft,et al. The formation of strand breaks in DNA after high-LET irradiation: a comparison of data from in vitro and cellular systems. , 1990, International journal of radiation biology.
[27] G. Barendsen. The relationships between RBE and LET for different types of lethal damage in mammalian cells: biophysical and molecular mechanisms. , 1994, Radiation research.