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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Chromosome damage and aneuploidy detected by interphase multicolour FISH in benzene-exposed shale oil workers.
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Chromosome damage and aneuploidy detected by interphase multicolour FISH in benzene-exposed shale oil workers.

机译:在暴露于苯的页岩油作业工人中,通过相间多色FISH检测到染色体损伤和非整倍性。

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A multicolour tandem-labelling fluorescence in situ hybridization (FISH) procedure was used to detect chromosome alterations in peripheral blood cells of a group of Estonian petrochemistry workers. Twelve workers employed in benzene production and five cokery workers, together with eight unexposed rural controls, were enrolled in the study. The methodology employed, based on the in situ hybridization of adjacent centromeric and pericentromeric regions, allowed the simultaneous detection of both chromosome breakage, involving damage-prone pericentromeric regions, and hyperploidy in interphase cells. Blood smears from all subjects were hybridized with chromosome 1 specific probes, in order to detect genotoxic damage in circulating lymphocytes and granulocytes. Moreover, lymphocyte cultures were established, harvested 48 h following mitogen stimulation and hybridized with the tandem chromosomes 1 and 9 probes. No significant difference in the incidence of breakage was detected in the nucleated cells of blood smears of exposed vs. control subjects. In contrast, modest but significantly increased frequencies of breakage affecting both chromosomes 1 and 9 were observed in the cultured lymphocytes of the benzene-exposed workers compared to the unexposed controls, suggesting an expression of premutagenic lesions during the S-phase in vitro. Across the entire study group, the frequencies of breakage affecting chromosomes 1 and 9 in the stimulated lymphocytes were highly intercorrelated (p < 0.001). No significant difference was found in the incidence of hyperploidy among the study groups, although a tendency to higher values was observed in benzene-exposed workers. Although the relatively small size of the study groups does not allow firm conclusions on the role of occupational exposure, the observed patterns are suggestive of effects in the benzene-exposed workers. This work also shows that tandem labelling FISH can be usefully applied in human biomonitoring, allowing the simultaneous detection of both hyperploidy and chromosome breakage at interphase in different cell types.
机译:多色串联标记荧光原位杂交(FISH)程序用于检测一组爱沙尼亚石化工作者外周血细胞的染色体改变。这项研究招募了十二名从事苯生产的工人和五名焦化工人以及八名未暴露的农村对照。基于相邻着丝粒和着丝粒区域的原位杂交所采用的方法,可以同时检测染色体断裂,包括易损坏的着丝粒区域和相间细胞的超倍性。为了检测循环淋巴细胞和粒细胞的遗传毒性损伤,将所有受试者的血液涂片与1号染色体特异性探针杂交。此外,建立了淋巴细胞培养物,在促有丝分裂刺激后48 h收获并与串联1号和9号探针杂交。在暴露对象与对照对象的血液涂片的有核细胞中,破损的发生率没有显着差异。相反,与未暴露的对照组相比,在暴露于苯的工人的培养淋巴细胞中观察到影响染色体1和9染色体的断裂频率适度但显着增加,表明在体外S期表达了致突变的病变。在整个研究组中,受刺激的淋巴细胞中影响1号和9号染色体的断裂频率高度相关(p <0.001)。尽管在接触苯的工人中观察到更高的趋势,但在研究组之间在超倍性的发生率方面没有发现显着差异。尽管研究小组的规模相对较小,无法就职业暴露的作用得出确切的结论,但观察到的模式暗示了对苯接触工人的影响。这项工作还表明,串联标记FISH可有效地应用于人类生物监测,从而可以同时检测不同细胞类型间期的超倍性和染色体断裂。

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