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Similarities and differences between smoking-related gene expression in nasal and bronchial epithelium

机译:鼻和支气管上皮中吸烟相关基因表达之间的异同

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摘要

Previous studies have shown that physiological responses to cigarette smoke can be detected via bronchial airway epithelium gene expression profiling and that heterogeneity in this gene expression response to smoking is associated with lung cancer. In this study, we sought to determine the similarity of the effects of tobacco smoke throughout the respiratory tract by determining patterns of smoking-related gene expression in paired nasal and bronchial epithelial brushings collected from 14 healthy nonsmokers and 13 healthy current smokers. Using whole genome expression arrays, we identified 119 genes whose expression was affected by smoking similarly in both bronchial and nasal epithelium, including genes related to detoxification, oxidative stress, and wound healing. While the vast majority of smoking-related gene expression changes occur in both bronchial and nasal epithelium, we also identified 27 genes whose expression was affected by smoking more dramatically in bronchial epithelium than nasal epithelium. Both common and site-specific smoking-related gene expression profiles were validated using independent microarray datasets. Differential expression of select genes was also confirmed by RT-PCR. That smoking induces largely similar gene expression changes in both nasal and bronchial epithelium suggests that the consequences of cigarette smoke exposure can be measured in tissues throughout the respiratory tract. Our findings suggest that nasal epithelial gene expression may serve as a relatively noninvasive surrogate to measure physiological responses to cigarette smoke and/or other inhaled exposures in large-scale epidemiological studies.
机译:以前的研究表明,可以通过支气管气道上皮基因表达谱检测对香烟烟雾的生理反应,并且该基因表达对吸烟的异质性与肺癌有关。在这项研究中,我们试图通过确定从14位健康的非吸烟者和13位目前的吸烟者中收集的成对的鼻和支气管上皮刷毛中与吸烟相关的基因表达模式,来确定烟草烟雾在整个呼吸道中的相似性。使用全基因组表达阵列,我们鉴定了119个在吸烟中在支气管和鼻上皮中表达受到相似影响的基因,包括与排毒,氧化应激和伤口愈合相关的基因。尽管绝大多数与吸烟相关的基因表达变化都发生在支气管和鼻上皮中,但我们还发现了27个基因,其表达在支气管上皮中的表达受到的影响比鼻上皮更严重。使用独立的微阵列数据集验证了常见和特定部位吸烟相关基因的表达谱。通过RT-PCR也证实了选择基因的差异表达。吸烟会在鼻和支气管上皮细胞中诱导相似的基因表达变化,这表明可以在整个呼吸道的组织中测量香烟烟雾暴露的后果。我们的研究结果表明,在大规模流行病学研究中,鼻上皮基因表达可能是相对无创的替代指标,用于测量对香烟烟雾和/或其他吸入暴露的生理反应。

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