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Influence of GSTs, CYP2E1 and mEH polymorphisms on 1, 3-butadiene-induced micronucleus frequency in Chinese workers.

机译:GSTs,CYP2E1和mEH多态性对1,3-丁二烯诱导的中国工人微核频率的影响。

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1,3-butadiene (BD) has been classified as a human carcinogen, however, the relationship between chromosomal damage and its metabolic polymorphisms is not clear. The present study used the CBMN assay to detect chromosomal damage in the peripheral lymphocytes of 166 exposed workers and 41 non-exposed healthy individuals. PCR and PCR-RFLP were applied to detect GSTT1, GSTM1, CYP2E1 c1c2 and mEH Tyr113His, His139Arg polymorphisms. The results demonstrated that the micronucleus (MN) frequency of the exposed workers was significantly higher than controls (P<0.01). Among the exposed workers, the individuals with high BD exposures are more susceptible to chromosomal damage than those with low exposures (FR=1.30, 95% CI 1.14-1.53; P<0.05). Gender-difference was also found in our study: males got lower micronucleus frequency than females. Workers who carried the genotypes of GSTM1 (+), CYP2E1 (c1c2/c2c2) and mEH intermediate (I) group had significantly higher MN frequency than those carrying the genotypes of GSTM1 (-) (FR=1.29, 95% CI 1.05-1.59; P<0.05), CYP2E1 (c1c1) (FR=1.55, 95% CI 1.24-1.93; P<0.01) or mEH high (H) group (FR=1.57, 95% CI 1.08-2.34; P<0.05), respectively. Our data indicated that the current BD exposure level could cause significantly higher MN frequency in workers than controls. Polymorphisms of GSTM1, CYP2E1 and mEH are susceptible to altered chromosome damage.
机译:1,3-丁二烯(BD)已被归类为人类致癌物,但是,染色体损伤与其代谢多态性之间的关系尚不清楚。本研究使用CBMN分析来检测166名暴露工人和41名未暴露健康个体的外周淋巴细胞中的染色体损伤。应用PCR和PCR-RFLP检测GSTT1,GSTM1,CYP2E1 c1c2和mEH Tyr113His,His139Arg多态性。结果表明,暴露工人的微核(MN)频率显着高于对照组(P <0.01)。在暴露的工人中,高BD暴露的个体比低暴露的个体更容易受到染色体损伤(FR = 1.30,95%CI 1.14-1.53​​; P <0.05)。在我们的研究中还发现了性别差异:男性的微核频率低于女性。携带GSTM1(+),CYP2E1(c1c2 / c2c2)和mEH中间体(I)基因型的工人的MN频率显着高于携带GSTM1(-)基因型的工人(FR = 1.29,95%CI 1.05-1.59 ; P <0.05),CYP2E1(c1c1)(FR = 1.55,95%CI 1.24-1.93; P <0.01)或mEH高(H)组(FR = 1.57,95%CI 1.08-2.34; P <0.05),分别。我们的数据表明,当前的BD暴露水平可能导致工人的MN频率明显高于对照组。 GSTM1,CYP2E1和mEH的多态性易受染色体损伤的改变。

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