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Genes interacting with occupational exposures to low molecular weight agents and irritants on adult-onset asthma in three european studies

机译:在三项欧洲研究中,基因与职业暴露于低分子量药物和成人哮喘的刺激物相互作用

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摘要

The biological mechanisms by which cleaning products and disinfectants-an emerging risk factor-affect respiratory health remain incompletely evaluated. Studying genes by environment interactions (G × E) may help identify new genes related to adult-onset asthma.; We identified interactions between genetic polymorphisms of a large set of genes involved in the response to oxidative stress and occupational exposures to low molecular weight (LMW) agents or irritants on adult-onset asthma.; Our data came from three large European cohorts: Epidemiological Family-based Study of the Genetics and Environment of Asthma (EGEA), Swiss Cohort Study on Air Pollution and Lung and Heart Disease in Adults (SAPALDIA), and European Community Respiratory Health Survey in Adults (ECRHS). A candidate pathway-based strategy identified 163 genes involved in the response to oxidative stress and potentially related to exposures to LMW agents/irritants. Occupational exposures were evaluated using an asthma job-exposure matrix and job-specific questionnaires for cleaners and healthcare workers. Logistic regression models were used to detect G × E interactions, adjusted for age, sex, and population ancestry, in 2,599 adults (mean age, 47 years; 60% women, 36% exposed, 18% asthmatics). p-Values were corrected for multiple comparisons.; Ever exposure to LMW agents/irritants was associated with current adult-onset asthma [OR = 1.28 (95% CI: 1.04, 1.58)]. Eight single nucleotide polymorphism (SNP) by exposure interactions at five loci were found at p 0.005: PLA2G4A (rs932476, chromosome 1), near PLA2R1 (rs2667026, chromosome 2), near RELA (rs931127, rs7949980, chromosome 11), PRKD1 (rs1958980, rs11847351, rs1958987, chromosome 14), and PRKCA (rs6504453, chromosome 17). Results were consistent across the three studies and after accounting for smoking.; Using a pathway-based selection process, we identified novel genes potentially involved in adult asthma by interaction with occupational exposure. These genes play a role in the NF-κB pathway, which is involved in inflammation. Citation: Rava M, Ahmed I, Kogevinas M, Le Moual N, Bouzigon E, Curjuric I, Dizier MH, Dumas O, Gonzalez JR, Imboden M, Mehta AJ, Tubert-Bitter P, Zock JP, Jarvis D, Probst-Hensch NM, Demenais F, Nadif R. 2017. Genes interacting with occupational exposures to low molecular weight agents and irritants on adult-onset asthma in three European studies. Environ Health Perspect 125:207-214; http://dx.doi.org/10.1289/EHP376.
机译:清洁产品和消毒剂(一种新兴的危险因素)影响呼吸系统健康的生物学机制尚未得到完整评估。通过环境相互作用(G×E)研究基因可能有助于鉴定与成人哮喘相关的新基因。我们确定了与氧化应激反应有关的大量基因的遗传多态性与成人暴露于低分子量(LMW)试剂或刺激物的职业暴露之间的相互作用。我们的数据来自三个欧洲大型队列:基于哮喘的遗传学和环境的流行病学家庭研究(EGEA),针对成年人的空气污染和肺与心脏病的瑞士队列研究(SAPALDIA),以及针对成年人的欧洲共同体呼吸健康调查(ECRHS)。一种基于候选途径的策略确定了163个基因,这些基因参与了对氧化应激的反应,并可能与LMW药剂/刺激物的暴露有关。使用哮喘工作暴露矩阵和针对清洁工和医护人员的针对特定工作的问卷对职业暴露进行评估。使用Logistic回归模型检测了2599名成年人(平均年龄47岁; 60%的女性,36%的接触者,18%的哮喘患者)的G×E相互作用,并根据年龄,性别和人口血统进行了调整。对p值进行了多次比较校正。曾经接触LMW药物/刺激物与当前成人发作的哮喘有关[OR = 1.28(95%CI:1.04,1.58)]。在p <0.005处发现了通过五个位点的暴露相互作用产生的八个单核苷酸多态性(SNP):PLA2G4A(rs932476,染色体1),PLA2R1(rs2667026,染色体2)附近,RELA(rs931127,rs7949980,染色体11),PRKD1( rs1958980,rs11847351,rs1958987,第14号染色体)和PRKCA(rs6504453,第17号染色​​体)。在三项研究中以及在考虑了吸烟之后,结果是一致的。使用基于途径的选择过程,我们通过与职业暴露的相互作用,鉴定了可能与成人哮喘有关的新基因。这些基因在涉及炎症的NF-κB通路中起作用。引用:Rava M,Ahmed I,Kogevinas M,Le Moual N,Bouzigon E,Curjuric I,Dizier MH,Dumas O,Gonzalez JR,Imboden M,Mehta AJ,Tubert-Bitter P,Zock JP,Jarvis D,Probst-Hensch NM,Demenais F,Nadif R.,2017年。在三项欧洲研究中,与职业接触低分子量药物和刺激物对成人发作的哮喘的基因相互作用。环境健康透视125:207-214; http://dx.doi.org/10.1289/EHP376。

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