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Fractional exhaled nitric oxide at multiple flow rates in chronic cough: association with lung function and airway
Dan Wang1, Yan Zhang1, Yun Liu1
1Department of Respiratory and Critical Care Medicine, The Second Affiliated Hospital of Xi'an Jiaotong University, Xi'an, China.
Background:
The relationship between airway inflammation and airflow obstruction in patients with chronic cough remains unclear. This study aimed to evaluate the relationships between multi-flow fractional exhaled nitric oxide parameters (FeNO50, FeNO200, and CaNO) and lung function, and to assess their utility in predicting airway hyperresponsiveness (AHR) in this population.
Materials And Methods:
This retrospective study enrolled 2205 chronic cough outpatients who underwent spirometry and multiple-flow FeNO measurements. Patients were stratified by airway function and FeNO levels for group comparisons, and Spearman's rank correlation was used. In a subgroup (n = 582) who underwent methacholine bronchial provocation test (BPT), the diagnostic accuracy of these parameters for AHR was evaluated.
Results:
Among 2014 patients with normal ventilation or airflow obstruction, FeNO50 and FeNO200 were significantly higher in outpatients with airflow obstruction than those with both normal ventilation and normal small airway function (p < 0.01). Weak but significant negative correlations were found between FeNO50 or FeNO200 and lung function parameters (all coefficients ∼0.1), which were slightly stronger in females. FeNO50 and FeNO200 showed moderate diagnostic value (AUCs: 0.775 and 0.721, Cut-off: 31.5 and 14.5 ppb, respectively), while CaNO showed none. Combining FeNO50 with small airway parameter (FEF50%pred) yielded the highest predictive accuracy (AUC: 0.895).
Conclusions:
FeNO50 and FeNO200 are associated with the severity of airflow obstruction and moderately predict AHR in chronic cough, whereas CaNO does not. Combining FeNO with lung function parameters enhances predictive performance. Despite statistical significance, the weak correlations between FeNO and lung function parameters warrant cautious clinical interpretation.
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