Literature DB >> 26781448

A mouse model of cytogenetic analysis to evaluate caesium137 radiation dose exposure and contamination level in lymphocytes.

Sandrine Roch-Lefèvre1, Cécile Martin-Bodiot2, Eric Grégoire2, Aurélie Desbrée3, Laurence Roy2, Joan Francesc Barquinero2,4.   

Abstract

In case of external overexposure to ionizing radiation, an estimation of its genotoxic effects on exposed individuals can be made retrospectively by the measurement of radiation-induced chromosome aberrations on circulating lymphocytes. Compared with external irradiation, intakes of radionuclides may, however, lead to specific features influencing dose distribution at the scale of body, of tissue or even of cell. Therefore, in case of internal contamination by radionuclides, experimental studies, particularly using animal models, are required to better understand mechanisms of their genotoxic effects and to better estimate the absorbed dose. The present study was designed to evaluate a cytogenetic method in mouse peripheral blood lymphocytes that would allow determination of yields and complexities of chromosome aberrations after low-dose rate exposure to (137)Cs delivered in vitro either by irradiation or by contamination. By using M-FISH analysis, we compared the low-dose rate responses observed in mouse to the high-dose rate responses observed both in mouse and in human. Promising similarities between the two species in the relative biological effect evaluation show that our cytogenetic model established in mouse might be useful to evaluate various radiation exposures, particularly relevant in case of intakes of radionuclides.

Entities:  

Keywords:  Chromosome aberrations; Cs137 contamination; Low-dose rate exposure; Mouse

Mesh:

Substances:

Year:  2016        PMID: 26781448     DOI: 10.1007/s00411-015-0620-7

Source DB:  PubMed          Journal:  Radiat Environ Biophys        ISSN: 0301-634X            Impact factor:   1.925


  19 in total

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Authors:  Bradford D Loucas; Richard Eberle; Susan M Bailey; Michael N Cornforth
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Review 2.  Limitations associated with analysis of cytogenetic data for biological dosimetry.

Authors:  Volodymyr A Vinnikov; Elizabeth A Ainsbury; Nataliya A Maznyk; David C Lloyd; Kai Rothkamm
Journal:  Radiat Res       Date:  2010-10       Impact factor: 2.841

3.  An improved culture system of mouse peripheral blood lymphocytes for analysis of radiation-induced chromosome aberrations.

Authors:  Reiko Kanda; Yi Shang; Satsuki Tsuji; Kiyomi Eguchi-Kasai; Isamu Hayata
Journal:  Biosci Rep       Date:  2004-12       Impact factor: 3.840

Review 4.  The genetic basis of tissue responses to ionizing radiation.

Authors:  K J Lindsay; P J Coates; S A Lorimore; E G Wright
Journal:  Br J Radiol       Date:  2007-09       Impact factor: 3.039

Review 5.  Advances in the biophysical and molecular bases of radiation cytogenetics.

Authors:  M S Sasaki
Journal:  Int J Radiat Biol       Date:  2009-01       Impact factor: 2.694

6.  ICRP Publication 107. Nuclear decay data for dosimetric calculations.

Authors:  K Eckerman; A Endo
Journal:  Ann ICRP       Date:  2008

7.  Effect of lymphocytes culture variations on the mitotic index and on the dicentric yield following gamma radiation exposure.

Authors:  L Roy; E Grégoire; G Gruel; S Roch-Lefevre; Pa Voisin; A Busset; C Martin; Ph Voisin
Journal:  Radiat Prot Dosimetry       Date:  2012-01-10       Impact factor: 0.972

8.  Induction of chromosome aberrations by 90Sr beta-particles in cultured human lymphocytes.

Authors:  N Vulpis; G Scarpa
Journal:  Mutat Res       Date:  1986-12       Impact factor: 2.433

Review 9.  Systematic review of experimental studies on the relative biological effectiveness of tritium.

Authors:  M P Little; B E Lambert
Journal:  Radiat Environ Biophys       Date:  2007-12-11       Impact factor: 1.925

10.  Chromosomal radiosensitivity and karyotype in mice using cultured peripheral blood lymphocytes, and comparison with this system in man.

Authors:  P De Boer; P P Van Buul; R Van Beek; F A Van Der Hoeven; T Natarajan
Journal:  Mutat Res       Date:  1977-03       Impact factor: 2.433

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  7 in total

1.  Use of a Humanized Mouse Model System in the Validation of Human Radiation Biodosimetry Standards.

Authors:  Monica Pujol-Canadell; Erik Young; Lubomir Smilenov
Journal:  Radiat Res       Date:  2019-02-25       Impact factor: 2.841

2.  Cytogenetic biodosimetry and dose-rate effect after radioiodine therapy for thyroid cancer.

Authors:  Igor K Khvostunov; Vladimir A Saenko; Valeri Krylov; Andrei Rodichev; Shunichi Yamashita
Journal:  Radiat Environ Biophys       Date:  2017-05-19       Impact factor: 1.925

3.  The Lowest Radiation Dose Having Molecular Changes in the Living Body.

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Journal:  Dose Response       Date:  2018-06-18       Impact factor: 2.658

4.  Differential expression of NPM, GSTA3, and GNMT in mouse liver following long-term in vivo irradiation by means of uranium tailings.

Authors:  Lan Yi; Hongxiang Mu; Nan Hu; Jing Sun; Jie Yin; Keren Dai; Dingxin Long; Dexin Ding
Journal:  Biosci Rep       Date:  2018-10-17       Impact factor: 3.840

5.  Effect of dose and dose rate on temporal γ-H2AX kinetics in mouse blood and spleen mononuclear cells in vivo following Cesium-137 administration.

Authors:  Helen C Turner; Younghyun Lee; Waylon Weber; Dunstana Melo; Aimee Kowell; Shanaz A Ghandhi; Sally A Amundson; David J Brenner; Igor Shuryak
Journal:  BMC Mol Cell Biol       Date:  2019-05-28

6.  Cytogenetic damage analysis in mice chronically exposed to low-dose internal tritium beta-particle radiation.

Authors:  Sandrine Roch-Lefèvre; Eric Grégoire; Cécile Martin-Bodiot; Matthew Flegal; Amélie Fréneau; Melinda Blimkie; Laura Bannister; Heather Wyatt; Joan-Francesc Barquinero; Laurence Roy; Mohamed Benadjaoud; Nick Priest; Jean-René Jourdain; Dmitry Klokov
Journal:  Oncotarget       Date:  2018-06-08

Review 7.  Eurados review of retrospective dosimetry techniques for internal exposures to ionising radiation and their applications.

Authors:  A Giussani; M A Lopez; H Romm; A Testa; E A Ainsbury; M Degteva; S Della Monaca; G Etherington; P Fattibene; I Güclu; A Jaworska; D C Lloyd; I Malátová; S McComish; D Melo; J Osko; A Rojo; S Roch-Lefevre; L Roy; E Shishkina; N Sotnik; S Y Tolmachev; A Wieser; C Woda; M Youngman
Journal:  Radiat Environ Biophys       Date:  2020-05-05       Impact factor: 1.925

  7 in total

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