4.3 Article Proceedings Paper

Thermomechanical damage of nucleosome by the shock wave initiated by ion passing through liquid water

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ELSEVIER
DOI: 10.1016/j.nimb.2011.10.069

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Ionizing-radiation therapy physics; Finite amplitude sound; Shock waves; Radiation damage; Positive-ion beams

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We report on the results of full-atom molecular dynamics simulations of the heat spike in the water medium caused by the propagation of the heavy ion in the vicinity of its Bragg peak. High rate of energy transfer from an ion to the molecules of surrounding water environment leads to the rapid increase of the temperature of the molecules in the vicinity of ions trajectory. As a result of an abrupt increase of the temperature we observe the formation of the nanoscale shock wave propagating through the medium. We investigate the thermomechanical damage caused by the shock wave to the nucleosome located in the vicinity of heavy ion trajectory. We observe the substantial deformation of the DNA secondary structure. We show that the produced shock wave can lead to the thermomechanical breakage of the DNA backbone covalent bonds and present estimates for the number of such strand brakes per one cell nucleus. (C) 2011 Elsevier B.V. All rights reserved.

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