Published December 1999 | Version v1
Journal article

Cell cycle and LET dependence for radiation-induced mutation. A possible mechanism for reversed dose-rate effect

  • 1. Hiroshima Univ. (Japan). Research Inst. for Radiation Biology and Medicine

Description

A previous study of the mutagenic action of 252Cf radiation in mouse L5178Y cells showed that the mutation frequency was higher when the dose was chronic rather than acute, which was in sharp contrast to the effects reported for γ-rays (Nakamura and Sawada, 1988). A Subsequent study using synchronized cells revealed that the cells at the G2/M stage were uniquely sensitive to mutation induction by 252Cf radiation but not to γ-rays (Tauchi et al., 1993). A log phase cell population was first subjected to conditioning gamma or 252Cf radiation doses at different dose-rates. The cell cycle distribution of these cells was then observed, and they were then exposed to 252Cf radiation, and the mutation rate was determined. The G2/M fraction increased by 3- to 4-fold when the conditioning doses (2 Gy of gamma or 1 Gy of 252Cf radiation) were delivered chronically over 10 h, but only slightly when the same doses were delivered over a 1 h period or less. Subsequent 252Cf irradiation gave higher mutation frequencies in the cells pre-irradiated with γ-rays over a protracted period of time than in those exposed with the higher dose-rate γ-rays. These results suggest that the radiation-induced G2 block could be at least partly (but not totally) responsible for this reverse dose-rate effect (Tauchi et al. 1996). Possible factors which cause the hyper-sensitivity of G2/M Cells to mutation induction by neutrons will be discussed. (author)

Additional details

Publishing Information

Journal Title
Journal of Radiation Research
Journal Volume
40
Journal Issue
suppl
Journal Page Range
p. 45-52
ISSN
0449-3060

Conference

Title
4. International symposium on biological effects of high LET radiation
Dates
12-14 Oct 1998
Place
Hiroshima (Japan)