This study aims to investigate the prognosis and clinical outcomes of patients with chronic obstructive pulmonary disease (COPD) who continue to experience refractory dyspnea despite treatment with long-acting beta-agonist (LABA) and long-acting muscarinic antagonist (LAMA). The research will prospectively follow a cohort of patients to identify clinical factors, lung function parameters, imaging features, and cardiovascular indicators associated with poor treatment response. By comparing these patients with those who show symptom improvement, the study seeks to determine predictors of exacerbations, lung function decline, and mortality. Findings are expected to guide the development of targeted strategies to improve the management of refractory dyspnea in COPD.
The study aims to identify actionable clinical factors and develop predictive models that can enhance personalized management approaches for patients with refractory dyspnea in COPD. This is a prospective observational cohort study designed to characterize patients with COPD who remain symptomatic despite standard inhaled therapy with LABA/LAMA combination. Participants will be enrolled from outpatient clinics and followed over time to assess changes in respiratory symptoms, lung function, exercise capacity, acute exacerbation frequency, and survival. Key assessments include: * Baseline demographic and clinical data (e.g., respiratory symptoms, comorbidities, smoking history). * Pulmonary function tests (spirometry and lung volumes), exercise capacity evaluations, echocardiography, chest radiographs, and computed tomography (CT). * Biomarker analysis (blood tests including inflammatory and cardiac markers). Patients will be classified into two groups: * Refractory COPD group - Patients with minimal improvement in dyspnea (defined as modified Medical Research Council (mMRC) ≥ 2 with \<1 point reduction or COPD Assessment Test (CAT) ≥ 10 with \<4 point reduction after ≥3 months of LABA/LAMA therapy). * Control group - Patients showing symptomatic improvement with the same therapy (mMRC \<2 or ≥1 point reduction, or CAT \<10 or ≥4 point reduction). The primary analyses will explore clinical and physiological predictors of poor outcomes, using advanced statistical modeling such as linear mixed-effects models for longitudinal lung function trends, negative binomial regression for exacerbation risk, and Cox proportional hazards models for survival analysis. Assessments: Baseline and follow-up evaluations will include demographic and clinical data, comorbidities, smoking history, inhaler adherence and technique, spirometry, lung volume measurements, 6-minute walk tests, echocardiography, chest radiographs, and high-resolution CT scans. Blood tests will include complete blood count, inflammatory markers (C-reactive protein (CRP), fibrinogen), N-terminal pro-B-type natriuretic peptide (NT-proBNP), and cardiac enzymes. Statistical Analysis: Longitudinal trends: Changes in lung function, symptoms, and exercise capacity will be assessed using linear mixed-effects models to evaluate the influence of clinical factors. Acute exacerbations: The frequency of moderate-to-severe exacerbations will be analyzed using negative binomial regression or zero-inflated models when appropriate. Mortality: Logistic regression will estimate 1-, 3-, and 5-year mortality risk, while Cox proportional hazards models will evaluate time-to-event outcomes. Predictive modeling: Candidate biomarkers and imaging features will be incorporated into multivariable predictive models to identify key determinants of poor prognosis.
Study Type
OBSERVATIONAL
Enrollment
730
Seoul National University College of Medicine, Seoul Metropolitan Government-Seoul National University Boramae Medical Center
Seoul, Seoul, South Korea
RECRUITINGAnnual rate of acute exacerbations in COPD
Annualized rate of moderate-to-severe exacerbations per patient-year, defined as episodes requiring systemic corticosteroids, antibiotics, or hospitalization. Moderate exacerbations will be defined as events requiring treatment with systemic corticosteroids and/or antibiotics without hospitalization. Severe exacerbations will be defined as events leading to hospitalization or emergency department visit. Unit: Number of exacerbations per patient-year
Time frame: Up to 5 years (annualized rate)
All-cause mortality
Proportion of participants who die from any cause Unit: Percentage of participants (%) or Number of deaths
Time frame: 1-, 3-, and 5-year follow-up.
Annual forced expiratory volume in one second (FEV1) decline rate
Rate of change in forced expiratory volume in one second (FEV1) (Milliliters per year (mL/year)) measured by spirometry Annual decline in FEV1 will be assessed using linear mixed-effects models.
Time frame: Baseline and annually for up to 5 years.
Annual forced expiratory volume in one second to forced vital capacity ratio (FEV1/FVC ratio) decline rate
Rate of change in post-bronchodilator forced expiratory volume in one second to forced vital capacity (FEV1/FVC ) ratio (%/year) measured by spirometry Annual decline in FEV1/FVC will be assessed using linear mixed-effects models.
Time frame: Baseline and annually for up to 5 years.
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