Radiation Oncology (Apr 2011)

Chromosomal radiosensitivity and acute radiation side effects after radiotherapy in tumour patients - a follow-up study

  • Figel Markus,
  • Thamm Reinhard,
  • Baumgartner Adolf,
  • Jaehnert Irene,
  • Geinitz Hans,
  • Braselmann Herbert,
  • Huber Reinhard,
  • Molls Michael,
  • Zitzelsberger Horst

DOI
https://doi.org/10.1186/1748-717X-6-32
Journal volume & issue
Vol. 6, no. 1
p. 32

Abstract

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Abstract Background Radiotherapists are highly interested in optimizing doses especially for patients who tend to suffer from side effects of radiotherapy (RT). It seems to be helpful to identify radiosensitive individuals before RT. Thus we examined aberrations in FISH painted chromosomes in in vitro irradiated blood samples of a group of patients suffering from breast cancer. In parallel, a follow-up of side effects in these patients was registered and compared to detected chromosome aberrations. Methods Blood samples (taken before radiotherapy) were irradiated in vitro with 3 Gy X-rays and analysed by FISH-painting to obtain aberration frequencies of first cycle metaphases for each patient. Aberration frequencies were analysed statistically to identify individuals with an elevated or reduced radiation response. Clinical data of patients have been recorded in parallel to gain knowledge on acute side effects of radiotherapy. Results Eight patients with a significantly elevated or reduced aberration yield were identified by use of a t-test criterion. A comparison with clinical side effects revealed that among patients with elevated aberration yields one exhibited a higher degree of acute toxicity and two patients a premature onset of skin reaction already after a cumulative dose of only 10 Gy. A significant relationship existed between translocations in vitro and the time dependent occurrence of side effects of the skin during the therapy period. Conclusions The results suggest that translocations can be used as a test to identify individuals with a potentially elevated radiosensitivity.