Measuring Airway Remodeling in Patients With Different COPD Staging Using Endobronchial Optical Coherence Tomography.

Ding, Ming; Chen, Yu; Guan, Wei-Jie; Zhong, Chang-Hao; Jiang, Mei; Luo, Wei-Zhan; Chen, Xiao-Bo; Tang, Chun-Li et al. · Chest · 2016

cross_sectional · Level IV

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Abstract

Although FEV<sub>1</sub> remains the gold standard for staging COPD, the association between airway remodeling and airflow limitation remains unclear. Endobronchial optical coherence tomography (EB-OCT) was performed to assess the association between disorders of large and medium to small airways and COPD staging. We also evaluated small airway architecture in heavy smokers with normal FEV<sub>1</sub> (S<sub>NL</sub>) and healthy never-smokers. We recruited 48 patients with COPD (stage I, n = 14; stage II, n = 15; stage, III-IV, n = 19), 21 S<sub>NL</sub>, and 17 healthy never-smokers. A smoking history inquiry, as well as spirometry, chest CT, bronchoscopy, and EB-OCT were performed. Mean luminal diameter (D<sub>mean</sub>), inner luminal area (Ai), and airway wall area (Aw) of third- to ninth-generation bronchi were measured using EB-OCT. Patients with more advanced COPD demonstrated greater abnormality of airway architecture in both large and medium to small airways, followed by S<sub>NL</sub> and never-smokers. Abnormality of airway architecture and EB-OCT parameters in S<sub>NL</sub> were comparable to those in stage I COPD. FEV<sub>1</sub>% predicted correlated with D<sub>mean</sub> and Ai of seventh- to ninth-generation bronchi in COPD; however, neither D<sub>mean</sub> nor Ai of third- to sixth-generation bronchi correlated with FEV<sub>1</sub>% in stage I and stage II COPD and in S<sub>NL</sub>. FEV<sub>1</sub>-based COPD staging partially correlates with small airway disorders in stage II-IV COPD. Small airway abnormalities detected by EB-OCT correlate with FEV<sub>1</sub>-based staging in COPD and identify early pathologic changes in healthy heavy smokers.

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