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谷胱甘肽硫转移酶T1、M1、P1基因多态性与汉族人群职业性噪声聋易感性的关系
引用本文:沈欢喜,李秀婷,朱宝立. 谷胱甘肽硫转移酶T1、M1、P1基因多态性与汉族人群职业性噪声聋易感性的关系[J]. 环境与职业医学, 2012, 0(5): 280-284
作者姓名:沈欢喜  李秀婷  朱宝立
作者单位:[1]南京医科大学公共卫生学院职业医学与环境卫生学系,江苏南京210029 [2]江苏省疾病预防控制中心职业病防治所,江苏南京210009
基金项目:江苏省社会发展项目(编号:BS2005661); 江苏省医学领军人才项目(编号:LJ201130)
摘    要:[目的]探讨谷胱甘肽硫转移酶的3种常见基因(GSTT1、GSTM1、GSTP1)多态性与汉族人群职业性噪声聋易感性的关系。[方法]采用病例-对照研究方法,病例组为电测听结果双耳高频平均听阈≥40dB的工人161例,对照组为年龄和性别与病例匹配且电测听结果双耳高频平均听阈〈40dB的同岗位轮班工人161例,基因型的测定采用聚合酶链式反应-限制性片段长度多态性(PCR-RFLP)。[结果]通过分析发现GSTM1缺失型是职业性噪声聋的危险因素(调整OR=1.85,95%CI=1.18~2.89),分层分析发现GSTM1缺失型与噪声作业工龄(〉20年)、噪声暴露水平[86~91dB(A)]和吸烟等危险因素结合后,存在交互作用,职业性耳聋的危险性增加(OR值变大)。[结论]GSTM1缺失型可能是汉族人群职业性噪声聋的危险因素之一,而且可能与暴露水平、吸烟因素有交互增强作用。

关 键 词:GSTT1  GSTM1  GSTP1  职业性噪声聋  多态性

Association between Glutathione S-Transferase T1, 541, P1 Polymorphisms and Occupational Deafness among Chinese Han Population
SHEN Huan-xi LI Xiu-ting,ZHU Bao-li. Association between Glutathione S-Transferase T1, 541, P1 Polymorphisms and Occupational Deafness among Chinese Han Population[J]. Journal of Environmental & Occupational Medicine, 2012, 0(5): 280-284
Authors:SHEN Huan-xi LI Xiu-ting  ZHU Bao-li
Affiliation:1.Department of Occupational Medicine and Environmental Health, School of Public Health, Nanjing Medical University, Nanjing, Jiangsu 210029, China; 2.Institute of Occupational Disease Prevention, Jiangsu Provincial Center for Disease Prevention and Control, Nanjing, Jiangsu 210009, China)
Abstract:[ Objective ] To investigate whether any of the three functional glutathione S-transferase (GSTT1, GSTM1, GSTPI) polymorphisms are associated with the susceptibility to occupational noise-induced deafness in Chinese Han population. [ Methods ] A case-control study was conducted: 161 cases whose average hearing threshold were no less than 40dB in high frequency, and 161 controls in the same working position with the cases which were matched with age and gender. Polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) was used as genotyping. [ Results 3 GSTM1 null genotype was a risk factor for occupational noise-induced deafness (adjusted OR=1.85, 95%CI=1.18-2.89). When combined with noise exposure years (〉20 years), noise exposure levels [ 86-91dB(A) ] and smoking, the risk became much higher (OR increased). [ Conclusion ] GSTM1 null genotype may be a risk factor for occupational noise-induced deafness in Chinese Han population. It may have interactions with exposure level and smoking status.
Keywords:GSTT1  GSTM1  GSTP1  occupational noise-induced deafness  polymorphism
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