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Genomic instability and the role of radiation quality

  • M. A. Kadhim
  • , M. A. Hill
  • , S. R. Moore

Research output: Contribution to journalReview articlepeer-review

Abstract

Genomic instability (GI) is a hallmark of tumorigenic progression and is observed as delayed genetic damage in the progeny of irradiated and unirradiated bystander cells. The expression of GI can be influenced by genotype, cell type and radiation quality. While several studies have demonstrated the induction of GI by high and low-linear energy transfer (LET) radiation, our work on human and mouse primary cell systems has shown LET-dependent differences in the induction and expression of GI. These differences might be attributed to differences in radiation track structure, dose rate, contribution of bystander cells and radiation dose. This paper reviews the role of radiation quality in the induction of GI and describe the possible mechanisms underlining the observed differences between radiation types on its induction. The experimental results presented suggest that dose might be the most significant factor in determining induction of GI after low-LET radiation.

Original languageEnglish (US)
Pages (from-to)221-227
Number of pages7
JournalRadiation Protection Dosimetry
Volume122
Issue number1-4
DOIs
StatePublished - Dec 2006
Externally publishedYes

Funding

The authors kindly acknowledge Debbie Bowler, Denise Macdonald, David Stevens and David Papworth for experimental, technical and intellectual contributions, and James Kelly and Kim Chapman for intellectual contributions. This work was supported by the Medical Research Council, UK Department of Health and US Department of Energy.

FundersFunder number
UK Department of Health
US Department of Energy
Medical Research Council/Biological Sciences Research CouncilMC_U142760473

    ASJC Scopus subject areas

    • Radiation
    • Radiological and Ultrasound Technology
    • Radiology Nuclear Medicine and imaging
    • Public Health, Environmental and Occupational Health

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