Literature DB >> 14698959

Mutagenic effect of low energy neutrons on human chromosome 11.

W Göhde1, D Uthe, N Wedemeyer, E Severin, K Greif, D Schlegel, H J Brede, W Köhnlein.   

Abstract

PURPOSE: The shape of the dose-effect curve for neutrons, i.e. the question as to whether the curve is linear or supralinear in the low-dose region, is still not clear. Therefore, the mutagenic effect of very low doses of low-energy neutrons was determined.
MATERIALS AND METHODS: Human-hamster hybrid A(L) cells contain human chromosome 11, which expresses the membrane protein CD59. This membrane protein can be detected immunologically and quantified by flow cytometry. The A(L) cells were irradiated with neutrons of 0.565, 2.5 or 14.8 MeV and the results were compared with those after 200 kVp X-rays. Before irradiation, cells spontaneously mutated in the CD59 gene were removed by magnetic cell sorting (MACS).
RESULTS: The relative biological effectiveness (RBE) for CD59 mutation induction was 19.8 (+/-2.7) for 0.565 MeV, 10.2 (+/-1.9) for 2.5 MeV, and 10.2 (+/-1.6) for 14.8 MeV neutrons. Linear mutation responses were obtained with all radiations except for 14.8 MeV neutrons where a supralinear curve may be a better fit. The deletion spectrum of mutated cell clones showed 29 Mbp deletions on average after irradiation with 0.069 Gy of 0.565 MeV neutrons. This scale of deletions is similar to that after 3 Gy 100 kV X-rays (=34 Mbp). For 50% cell survival, the RBE of the neutrons was 11 compared with 200 kV X-rays.
CONCLUSIONS: Neutrons of low energies (0.565 or 2.5 MeV) produce a linear dose-response for mutation in the tested dose range of 0.015-0.15 Gy. The neutron curve of 14.8 MeV can be approximated by a curvilinear or linear function.

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Year:  2003        PMID: 14698959     DOI: 10.1080/09553000310001621419

Source DB:  PubMed          Journal:  Int J Radiat Biol        ISSN: 0955-3002            Impact factor:   2.694


  1 in total

1.  Comparative study of the effects of different radiation qualities on normal human breast cells.

Authors:  Dajana Juerß; Monique Zwar; Ulrich Giesen; Ralf Nolte; Stephan Kriesen; Giorgio Baiocco; Monika Puchalska; Marc-Jan van Goethem; Katrin Manda; Guido Hildebrandt
Journal:  Radiat Oncol       Date:  2017-09-25       Impact factor: 3.481

  1 in total

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