Nagai Katsura, Betsuyaku Tomoko, Suzuki Masaru, Nasuhara Yasuyuki, Kaga Kichizo, Kondo Satoshi, Nishimura Masaharu
First Department of Medicine, Hokkaido University School of Medicine, Sapporo, Japan.
Antioxid Redox Signal. 2008 Apr;10(4):705-14. doi: 10.1089/ars.2007.1941.
Dual oxidase (Duox) 1 and Duox2 are important sources of hydrogen peroxide production and play a role in host defense in airways. Little is known about their regulation in association with smoking or chronic obstructive pulmonary disease (COPD). We investigated the epithelial expression of Duox1 and Duox2 in the airways of smokers, and the relationship between this expression and COPD at early stage. First, using bronchoscopy, we harvested tracheal and bronchial epithelium from individuals who have never smoked and current smokers. Duox1 expression in brushed tracheal and bronchial epithelium was significantly downregulated, whereas Duox2 was upregulated, in current smokers as compared to individuals who have never smoked. Second, laser capture microdissection and microscope-assisted manual dissection were performed in surgically resected lung tissues to collect bronchiolar epithelium and alveolar septa. Subjects with mild/moderate COPD, who were all former smokers, exhibited downregulation of bronchiolar Duox1 and Duox2 when compared to individuals who have never smoked, whereas a difference between former smokers, with and without COPD, was observed only for Duox1. Alveolar Duox1 and Duox2 expression was low and did not differ among the groups. These results imply that the airway expression of Duox1 and Duox2 is diversely associated with smoking and COPD.
双氧化酶(Duox)1和Duox2是过氧化氢产生的重要来源,在气道的宿主防御中发挥作用。关于它们与吸烟或慢性阻塞性肺疾病(COPD)相关的调控机制知之甚少。我们研究了吸烟者气道中Duox1和Duox2的上皮表达,以及这种表达与早期COPD之间的关系。首先,通过支气管镜检查,我们从从不吸烟的个体和当前吸烟者中获取气管和支气管上皮。与从不吸烟的个体相比,当前吸烟者刷取的气管和支气管上皮中Duox1表达显著下调,而Duox2表达上调。其次,在手术切除的肺组织中进行激光捕获显微切割和显微镜辅助手动解剖,以收集细支气管上皮和肺泡隔。所有均为既往吸烟者的轻度/中度COPD患者,与从不吸烟的个体相比,细支气管Duox1和Duox2表达下调,而仅在Duox1方面观察到有COPD和无COPD的既往吸烟者之间存在差异。肺泡Duox1和Duox2表达较低,且各组之间无差异。这些结果表明,Duox1和Duox2的气道表达与吸烟和COPD存在不同的关联。