Published May 2005 | Version v1
Report

Comparison of initial DNA (Chromosome) damage/repair in cells exposed to heavy ion particles and X-rays

  • 1. National Inst. of Radiological Sciences, Research Center for Radiation Safety, Chiba, Chiba (Japan)
  • 2. International Christian Univ., Natural Science Div., Mitaka, Tokyo (Japan)

Description

We have studied cell survival and chromosome damage/repair in normal and non homologous end-joining (NHEJ) deficient human cells exposed to carbon ions (290 MeV/u, ∼70 keV/um), iron ions (500 MeV/u, ∼200 keV/um) and X-rays. In order to examine the effect of heavy ion on double strand break (DSB) repair machinery, the auto-phosphorylation of DNA-PKcs was also investigated. The important discoveries made during this period are: 200 keV/um iron irradiation induced additional molecular damage beyond that 70 keV/um carbon did. Iron irradiation not only caused an inefficient G1 chromosome repair, but also induced non-repairable DSB/chromosome damage. The auto-phosphorylation of DNA-PKcs was significantly affected by high linear energy transfer (LET) irradiation when compared to X-rays. These results indicate NHEJ machinery was markedly disturbed by high LET radiation when compared to low LET radiation. (author)

Part of:
2004 annual report of the research project with heavy ions at NIRS-HIMAC

Additional details

Publishing Information

Imprint Title
2004 annual report of the research project with heavy ions at NIRS-HIMAC
Imprint Pagination
339 p.
Journal Page Range
p. 114-115
Report number
NIRS-M--180

Optional Information

Secondary number(s)
HIMAC--106