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Association of Environmental Arsenic Exposure, Genetic Polymorphisms of Susceptible Genes, and Skin Cancers in Taiwan

机译:环保砷暴露,易感基因的遗传多态性,以及台湾皮肤癌的遗传多态性

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Deficiency in the capability of xenobiotic detoxification and arsenic methylation may be correlated with individual susceptibility to arsenic-related skin cancers. We hypothesized that glutathione S-transferase (GST Ml, Tl, and PI), reactive oxygen species (ROS) related metabolic genes (NQO1, EPHX1, and HO-1), and DNA repair genes (XRCC1, XPD, hOGGl, and ATM) together may play a role in arsenic-induced skin carcinogenesis. We conducted a case-control study consisting of 70 pathologically confirmed skin cancer patients and 210 age and gender matched participants with genotyping of 12 selected polymorphisms. The skin cancer risks were estimated by odds ratio (OR) and 95% confidence interval (CI) using logistic regression. EPHX1 Tyr113His, XPD C156A, and GSTT1 null genotypes were associated with skin cancer risk (OR = 2.99, 95% CI = 1.01-8.83; OR = 2.04,95% CI = 0.99-4.27; OR = 1.74,95% CI = 1.00-3.02, resp.). However, none of these polymorphisms showed significant association after considering arsenic exposure status. Individuals carrying three risk polymorphisms of EPHX1 Tyrll3His, XPD C156A, and GSTs presented a 400% increased skin cancer risk when compared to those with less than or equal to one polymorphism. In conclusion, GSTs, EPHX1, and XPD are potential genetic factors for arsenic-induced skin cancers. The roles of these genes for arsenic-induced skin carcinogenesis need to be further evaluated.
机译:缺乏血管生物解毒和砷甲基化的能力可能与对砷相关皮肤癌的个体易感性相关。我们假设谷胱甘肽S-转移酶(GST mL,T1和Pi),反应性氧(ROS)相关代谢基因(NQO1,EphX1和HO-1)和DNA修复基因(XRCC1,XPD,HogG1和ATM )在一起可能在砷诱导的皮肤致癌物中发挥作用。我们进行了一个案例对照研究,由70例病理证实的皮肤癌患者和210岁和性别匹配参与者组成,具有12种选定多态性的基因分型。使用逻辑回归估计皮肤癌风险(或)和95%置信区间(CI)估算。 Ephx1 tyr113his,xpd c156a和gstt1 null基因型与皮肤癌症风险有关(或= 2.99,95%ci = 1.01-83;或= 2.04,95%ci = 0.99-4.27;或= 1.74,95%ci = 1.00 -3.02,resp。)。然而,在考虑砷暴露状态之后,这些多态性都没有显示出显着的关联。携带三种风险多态性的ephx1 tyrll3His,XPD C156A和GST的个体呈现出400%的皮肤癌风险,当与少于或等于一种多态性时,皮肤癌风险增加。总之,GSTS,EphX1和XPD是砷诱导的皮肤癌的潜在遗传因素。这些基因对砷诱导的皮肤致癌的作用需要进一步评估。

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