Published December 1995 | Version v1
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Effects of charged particles on DNA

  • 1. National Inst. of Radiological Sciences, Chiba (Japan)

Description

It can be noted that it is not simple double strand breaks (dsb) but the non-reparable breaks that are associated with high biological effectiveness in the cell killing effect for high LET radiation. Here, we have examined the effectiveness of fast neutrons and low (initial energy = 12 MeV/u) or high (135 MeV/u) energy charged particles on cell death in 19 mammalian cell lines including radiosensitive mutants. Some of the radiosensitive lines were deficient in DNA dsb repair such as LX830, M10, V3, and L5178Y-S cells and showed lower values of relative biological effectiveness (RBE) for fast neutrons if compared with their parent cell lines. The other lines of human ataxia-telangiectasia fibroblasts, irs 1, irs 2, irs 3 and irs 1SF cells, which were also radiosensitive but known as proficient in dsb repair, showed moderate RBEs. Dsb repair deficient mutants showed low RBE values for heavy ions. These experimental findings suggest that the DNA repair system does not play a major role against the attack of high linear energy transfer (LET) radiations. Therefore, we hypothesize that a main cause of cell death induced by high LET radiations is due to non-reparable dsb, which are produced at a higher rate compared to low LET radiations. (author)

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Part of:
Modeling of biological effects and risks of radiation exposure

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Publishing Information

Imprint Title
Modeling of biological effects and risks of radiation exposure
Imprint Pagination
254 p.
Journal Page Range
p. 39-46
Report number
NIRS-M--106

Conference

Title
26. National Institute of Radiological Sciences symposium
Dates
8-9 Dec 1994
Place
Chiba (Japan)

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