接触低水平苯的工人的染色体畸变:与遗传多态性的关系。

Su Young Kim, Jung Keun Choi, Yoon Hee Cho, Eun Jung Chung, Domyung Paek, Hai Won Chung
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引用次数: 56

摘要

苯及其代谢物损害人淋巴细胞,导致染色体畸变和非整倍体。苯代谢酶基因的多态性与苯相关的血液毒性有关。在本研究中,我们检测了苯诱导的非整倍体的特异性以及遗传多态性(GSTM1、GSTT1、GSTP1、NAT2、NQO1和CYP2E1)对染色体畸变的影响。共有82名来自焦炉厂的苯暴露工人和76名匹配的对照进行了检查。工作场所空气中的苯浓度范围为0.014-0.743 p.m(几何平均值为0.557 p.m)。苯暴露与8号和21号染色体的单体和三体显著增加有关。8号和21号染色体之间的易位[t(8:21)]在高水平暴露组中是对照组的8倍。多元回归分析表明,染色体畸变频率与苯暴露和代谢酶基因多态性显著相关。特定的基因型子集,包括GSTM1-null和GSTT1-null基因型,NAT2的慢乙酰化型,NQO1基因型的变体以及CYP2E1 DraI和RsaI基因型,在调整年龄,饮酒和吸烟后,与苯暴露个体的非整倍体频率增加有关。这些结果表明,苯代谢酶基因的多态性影响了个体对与苯暴露有关的染色体畸变的易感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chromosomal aberrations in workers exposed to low levels of benzene: association with genetic polymorphisms.

Benzene and its metabolites damage human lymphocytes, resulting in chromosomal aberrations and aneuploidy. Polymorphisms in the genes for benzene-metabolizing enzymes have been implicated in benzene-associated haematotoxicity. In this study, we examined the specificity of benzene-induced aneuploidy and the influence of genetic polymorphisms (GSTM1, GSTT1, GSTP1, NAT2, NQO1 and CYP2E1) on chromosomal aberrations. In total, 82 benzene-exposed workers from a coke oven plant and 76 matched controls were examined. The benzene concentration in the work-place air ranged from 0.014-0.743 p.p.m. (geometric mean 0.557 p.p.m.). Benzene exposure was associated with significant increases in both monosomy and trisomy of chromosomes 8 and 21. Translocations between chromosomes 8 and 21 [t(8:21)] were eight-fold more frequent in the high-level exposure group compared to the control group. Multiple regression analysis indicated that the frequencies of chromosome aberrations were significantly associated with benzene exposure and polymorphisms in the metabolic enzyme genes. A particular subset of genotypes, which included the GSTM1-null and GSTT1-null genotypes, the slow acetylator type of NAT2, a variant of the NQO1 genotype and the CYP2E1 DraI and RsaI genotypes, were either separately, or in combination, associated with increased frequencies of aneuploidy among the benzene-exposed individuals after adjustments for age, alcohol consumption and smoking. These results suggest that polymorphisms in the genes for benzene-metabolizing enzymes influence the susceptibility of individuals to chromosomal aberrations in relation to benzene exposure.

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