scholarly journals Polymorphisms in the DNA repair genesXRCC1 and ERCC2 and biomarkers of DNA damage in human blood mononuclear cells

2000 ◽  
Vol 21 (7) ◽  
pp. 1457-1457
2008 ◽  
Vol 138 (8) ◽  
pp. 1411-1416 ◽  
Author(s):  
Roberto Fabiani ◽  
Patrizia Rosignoli ◽  
Angelo De Bartolomeo ◽  
Raffaela Fuccelli ◽  
Maurizio Servili ◽  
...  

2011 ◽  
Vol 146 (2) ◽  
pp. 141-149 ◽  
Author(s):  
Yolanda Jasso-Pineda ◽  
Fernando Díaz-Barriga ◽  
Jaqueline Calderón ◽  
Leticia Yáñez ◽  
Leticia Carrizales ◽  
...  

2021 ◽  
Vol 11 ◽  
Author(s):  
Ellina Macaeva ◽  
Kevin Tabury ◽  
Arlette Michaux ◽  
Ann Janssen ◽  
Nicole Averbeck ◽  
...  

Understanding the differences in biological response to photon and particle radiation is important for optimal exploitation of particle therapy for cancer patients, as well as for the adequate application of radiation protection measures for astronauts. To address this need, we compared the transcriptional profiles of isolated peripheral blood mononuclear cells 8 h after exposure to 1 Gy of X-rays, carbon ions or iron ions with those of non-irradiated cells using microarray technology. All genes that were found differentially expressed in response to either radiation type were up-regulated and predominantly controlled by p53. Quantitative PCR of selected genes revealed a significantly higher up-regulation 24 h after exposure to heavy ions as compared to X-rays, indicating their prolonged activation. This coincided with increased residual DNA damage as evidenced by quantitative γH2AX foci analysis. Furthermore, despite the converging p53 signature between radiation types, specific gene sets related to the immune response were significantly enriched in up-regulated genes following irradiation with heavy ions. In addition, irradiation, and in particular exposure to carbon ions, promoted transcript variation. Differences in basal and iron ion exposure-induced expression of DNA repair genes allowed the identification of a donor with distinct DNA repair profile. This suggests that gene signatures may serve as a sensitive indicator of individual DNA damage repair capacity. In conclusion, we have shown that photon and particle irradiation induce similar transcriptional pathways, albeit with variable amplitude and timing, but also elicit radiation type-specific responses that may have implications for cancer progression and treatment


Author(s):  
S. Schumann ◽  
U. Eberlein ◽  
C. Lapa ◽  
J. Müller ◽  
S. Serfling ◽  
...  

Abstract Purpose One therapy option for prostate cancer patients with bone metastases is the use of [223Ra]RaCl2. The α-emitter 223Ra creates DNA damage tracks along α-particle trajectories (α-tracks) in exposed cells that can be revealed by immunofluorescent staining of γ-H2AX+53BP1 DNA double-strand break markers. We investigated the time- and absorbed dose-dependency of the number of α-tracks in peripheral blood mononuclear cells (PBMCs) of patients undergoing their first therapy with [223Ra]RaCl2. Methods Multiple blood samples from nine prostate cancer patients were collected before and after administration of [223Ra]RaCl2, up to 4 weeks after treatment. γ-H2AX- and 53BP1-positive α-tracks were microscopically quantified in isolated and immuno-stained PBMCs. Results The absorbed doses to the blood were less than 6 mGy up to 4 h after administration and maximally 16 mGy in total. Up to 4 h after administration, the α-track frequency was significantly increased relative to baseline and correlated with the absorbed dose to the blood in the dose range < 3 mGy. In most of the late samples (24 h – 4 weeks after administration), the α-track frequency remained elevated. Conclusion The γ-H2AX+53BP1 assay is a potent method for detection of α-particle-induced DNA damages during treatment with or after accidental incorporation of radionuclides even at low absorbed doses. It may serve as a biomarker discriminating α- from β-emitters based on damage geometry.


Life Sciences ◽  
2006 ◽  
Vol 80 (3) ◽  
pp. 181-186 ◽  
Author(s):  
Masayuki Niwa ◽  
Koichi Hotta ◽  
Akira Hara ◽  
Kouseki Hirade ◽  
Hidenori Ito ◽  
...  

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