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首页> 外文期刊>DNA and Cell Biology >Polymorphisms in Genes Involved in Oxidative Stress Response in Patients with Sudden Sensorineural Hearing Loss and Meniere's Disease in a Japanese Population
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Polymorphisms in Genes Involved in Oxidative Stress Response in Patients with Sudden Sensorineural Hearing Loss and Meniere's Disease in a Japanese Population

机译:日本人群突然感觉神经性听力丧失和梅尼埃病患者氧化应激反应相关基因的多态性

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The etiologies of idiopathic sudden sensorineural hearing loss (SSNHL) and Ménière's disease remain unclear. Recently, accumulating evidence has demonstrated that oxidative stress is related to the pathology of inner ear disease. Because genetic factors may contribute partly to the etiologies of SSNHL and Ménière's disease, we investigated the associations between genetic polymorphisms located in oxidative stress response genes and susceptibility to SSNHL and Ménière's disease. We compared 84 patients affected by SSNHL, 82 patients affected by Ménière's disease, and 2107 adults (1056 men and 1051 women; mean age, 59.2 years; range, 40–79 years) who participated in the National Institute for Longevity Sciences, Longitudinal Study of Aging. Multiple logistic regression was used to calculate odds ratios for SSNHL and Ménière's disease in individuals with polymorphisms in the genes glutathione peroxidase 1 (GPX1) (Pro198Leu, rs1050450), paraoxonase 1 (PON1) (Gln192Arg, rs662; and Met55Leu, rs854560), PON2 (Ser311Cys, rs7493), and superoxide dismutase 2 (SOD2) (Val16Ala, rs4880), with adjustment for age and gender. No significant differences in the distribution of the genotypes at these polymorphisms were observed among individuals with SSNHL and Ménière's disease and controls. No significant risk for SSNHL and Ménière's disease was observed in the additive genetic model, regardless of moderating variables. The C allele of SOD2 (rs4880) was more frequent in Ménière's disease cases with a hearing level over 50 dB compared with cases with a hearing level below 50 dB, suggesting that this polymorphism is associated with progression of a hearing loss in Ménière's disease. In conclusion, no significant associations between the polymorphisms of GPX1, PON1, PON2, and SOD2 and risk of SSNHL and Ménière's disease were observed in this Japanese case–control study.
机译:特发性突然感觉神经性听力损失(SSNHL)和梅尼埃病的病因仍不清楚。最近,越来越多的证据表明氧化应激与内耳疾病的病理相关。由于遗传因素可能部分地导致了SSNHL和梅尼埃氏病的病因,因此,我们研究了氧化应激反应基因中的遗传多态性与SSNHL和梅尼埃氏病的易感性之间的关联。我们比较了参加美国国家长寿科学研究所纵向研究的84例SSNHL患者,82例梅尼埃病患者和2107名成年人(1056名男性和1051名女性;平均年龄59.2岁;范围40-79岁)。衰老多重logistic回归用于计算谷胱甘肽过氧化物酶1(GPX1)(Pro198Leu,rs1050450),对氧磷酶1(PON1)(Gln192Arg,rs662;和Met55Leu,rs854560),PON2等位基因多态性个体的SSNHL和梅尼埃病的优势比(Ser311Cys,rs7493)和超氧化物歧化酶2(SOD2)(Val16Ala,rs4880),并根据年龄和性别进行了调整。在患有SSNHL和梅尼埃氏病的人与对照组之间,在这些多态性上的基因型分布没有显着差异。不论调节变量如何,在加成遗传模型中均未观察到SSNHL和梅尼埃病的重大风险。与听力水平低于50 dB的病例相比,听力水平高于50 dB的梅尼埃氏病患者中SOD2(rs4880)的C等位基因更为常见,这表明该多态性与梅尼尔疾病中的听力减退相关。总之,在该日本病例对照研究中,未观察到GPX1,PON1,PON2和SOD2多态性与SSNHL和梅尼埃病风险之间存在显着关联。

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