TY - JOUR
T1 - Ionizing radiation and complex dna damage
T2 - Quantifying the radiobiological damage using monte carlo simulations
AU - Chatzipapas, Konstantinos P.
AU - Papadimitroulas, Panagiotis
AU - Emfietzoglou, Dimitris
AU - Kalospyros, Spyridon A.
AU - Hada, Megumi
AU - Georgakilas, Alexandros G.
AU - Kagadis, George C.
N1 - Publisher Copyright:
© 2020 by the authors. Licensee MDPI, Basel, Switzerland.
PY - 2020/4
Y1 - 2020/4
N2 - Ionizing radiation is a common tool in medical procedures. Monte Carlo (MC) techniques are widely used when dosimetry is the matter of investigation. The scientific community has invested, over the last 20 years, a lot of effort into improving the knowledge of radiation biology. The present article aims to summarize the understanding of the field of DNA damage response (DDR) to ionizing radiation by providing an overview on MC simulation studies that try to explain several aspects of radiation biology. The need for accurate techniques for the quantification of DNA damage is crucial, as it becomes a clinical need to evaluate the outcome of various applications including both low-and high-energy radiation medical procedures. Understanding DNA repair processes would improve radiation therapy procedures. Monte Carlo simulations are a promising tool in radiobiology studies, as there are clear prospects for more advanced tools that could be used in multidisciplinary studies, in the fields of physics, medicine, biology and chemistry. Still, lot of effort is needed to evolve MC simulation tools and apply them in multiscale studies starting from small DNA segments and reaching a population of cells.
AB - Ionizing radiation is a common tool in medical procedures. Monte Carlo (MC) techniques are widely used when dosimetry is the matter of investigation. The scientific community has invested, over the last 20 years, a lot of effort into improving the knowledge of radiation biology. The present article aims to summarize the understanding of the field of DNA damage response (DDR) to ionizing radiation by providing an overview on MC simulation studies that try to explain several aspects of radiation biology. The need for accurate techniques for the quantification of DNA damage is crucial, as it becomes a clinical need to evaluate the outcome of various applications including both low-and high-energy radiation medical procedures. Understanding DNA repair processes would improve radiation therapy procedures. Monte Carlo simulations are a promising tool in radiobiology studies, as there are clear prospects for more advanced tools that could be used in multidisciplinary studies, in the fields of physics, medicine, biology and chemistry. Still, lot of effort is needed to evolve MC simulation tools and apply them in multiscale studies starting from small DNA segments and reaching a population of cells.
KW - Biological response
KW - Complex DNA damage
KW - Ionizing radiation
KW - Monte Carlo method
KW - Nanoscale simulations
KW - Radiobiology
UR - http://www.scopus.com/inward/record.url?scp=85082876399&partnerID=8YFLogxK
U2 - 10.3390/cancers12040799
DO - 10.3390/cancers12040799
M3 - Review article
AN - SCOPUS:85082876399
SN - 2072-6694
VL - 12
JO - Cancers
JF - Cancers
IS - 4
M1 - 799
ER -