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Cytogenetic monitoring of industrial radiographers using the micronucleus assay
Authors:I. Sari-Minodier, T. Orsi  re, L. Bellon, J. Pompili, C. Sapin,A. Botta
Affiliation:a Service de Médecine et Santé au Travail, Laboratoire de Biogénotoxicologie et Mutagenèse Environnementale (EA 1784-IFR PMSE 112), Faculté de Médecine, Université de la Méditerranée, 27 Bd Jean Moulin, 13385, Marseille Cedex 05, France;b Service de Santé Publique (EA 3279), Faculté de Médecine, Université de la Méditerranée, 27 Bd Jean Moulin, 13385, Marseille Cedex 05, France
Abstract:Industrial radiography is the process of using either gamma-emitting radionuclide sources or X-ray machines to examine the safety of industrial materials. Industrial radiographers are among the radiation workers who receive the highest individual occupational radiation doses. To assess occupationally induced chromosomal damage, we performed the cytokinesis-block micronucleus (CBMN) assay in peripheral lymphocytes of 29 male industrial radiographers, exposed to ionizing radiation for 12.8 years±11.2, in comparison with 24 gender-, age-, and smoking habits-matched controls. The CBMN assay was combined with fluorescent in situ hybridization with a pan-centromeric DNA probe in 17 exposed subjects and 17 controls randomized from the initial populations. The mean cumulative equivalent dose, recorded by film dosimeters, was 67.2 mSv±49.8 over the past 5 years. The mean micronucleated binucleated cell rate (MCR) was significantly higher in the industrial radiographers than in the controls (10.7‰±5.2 versus 6.6‰±3.1, P=0.009); this difference was due to a significantly higher frequency of centromere-negative micronuclei (C−MN) in exposed subjects than in controls (8.5‰±4.9 versus 2.2‰±1.6, P<0.001). The two populations did not significantly differ in centromere-positive micronuclei (C+MN) frequency. These findings demonstrate a clastogenic effect in lymphocytes of industrial radiographers. MCR significantly positively correlated with age in the two groups. After correction for the age effect, MCR did not correlate with duration of occupational exposure. No correlation between radiation doses and MCR, C−MN, and C+MN frequencies was observed. In addition to physical dosimetry records, the enhanced chromosomal damage in lymphocytes of industrial radiographers emphasizes the importance of radiation safety programs.
Keywords:Occupational radiation exposure   Industrial radiography   Human lymphocyte   Micronucleus   FISH
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