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一家燃煤发电厂工人的细胞遗传学损伤。

Cytogenetic damage in workers from a coal-fired power plant.

作者信息

Celik Mustafa, Donbak Lale, Unal Fatma, Yüzbasioglu Deniz, Aksoy Hüseyin, Yilmaz Serkan

机构信息

University of Kahramanmaras Sütcü Imam, Science and Arts Faculty, Department of Biology, Kahramanmaras, Turkey.

出版信息

Mutat Res. 2007 Mar 5;627(2):158-63. doi: 10.1016/j.mrgentox.2006.11.003. Epub 2006 Dec 18.

Abstract

The aim of this study was to investigate the genotoxic risk to workers occupationally exposed to coal combustion products in Afsin-Elbistan A power plant, located in south-eastern Turkey. We analysed chromosomal aberrations (CAs), polyploidy, sister-chromatid exchanges (SCEs), and micronuclei (MN) in 48 male workers without a history of smoking, tobacco chewing, or alcohol consumption. The results were compared with a control group of 30 healthy male individuals without exposure to any known genotoxic agents. The mean frequencies of CA, polyploidy, SCEs (P<0.01), and MN (P<0.05) were significantly higher in workers than in the control group, by the Mann-Whitney U-test. Spearman's rho correlation analysis revealed a significant increase in the frequency of CA and MN with increasing years of exposure (P<0.05). However, there was no significant effect of age on the cytogenetic markers analysed in both groups (P>0.05). The data obtained from this study clearly showed chromosomal hazard in the peripheral lymphocytes of workers exposed to coal combustion products in Afsin-Elbistan A power plant for several years. This cytogenetic damage might be attributed to the cumulative effects of several substances due to chemical complexity of the coal ash and gaseous emissions rather than a specific substance.

摘要

本研究旨在调查土耳其东南部阿菲辛 - 埃尔比斯坦A发电厂职业接触煤燃烧产物的工人的遗传毒性风险。我们分析了48名无吸烟、嚼烟或饮酒史的男性工人的染色体畸变(CA)、多倍体、姐妹染色单体交换(SCE)和微核(MN)情况。将结果与30名未接触任何已知遗传毒性剂的健康男性个体组成的对照组进行比较。通过曼 - 惠特尼U检验,工人组中CA、多倍体、SCE(P<0.01)和MN(P<0.05)的平均频率显著高于对照组。斯皮尔曼等级相关分析显示,随着接触年限的增加,CA和MN的频率显著增加(P<0.05)。然而,年龄对两组中分析的细胞遗传学标志物均无显著影响(P>0.05)。本研究获得的数据清楚地表明,在阿菲辛 - 埃尔比斯坦A发电厂接触煤燃烧产物数年的工人外周淋巴细胞中存在染色体危害。这种细胞遗传学损伤可能归因于煤灰和气态排放物化学复杂性导致的多种物质的累积效应,而非某一种特定物质。

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