Objectives: Occupational exposures may contribute to the development of COPD, a leading cause of morbidity and mortality globally. Using an exposome approach in a follow-up design, we aimed to examine the association between the occupational exposome and new-onset COPD in 2 population-based cohorts: the European Community Respiratory Health Survey (ECRHS) with 2 follow-ups (n = 4,087; observations = 6,224) and the CONSTANCES cohort with 1 follow-up (n = 8,255).
Methods: COPD was defined by respiratory symptom(s) and forced expiratory volume in the first second (FEV1)/forced vital capacity (FVC) below the lower limit of normal. Occupational exposures were assessed through long-term job histories linked to 6 job exposure matrices representing 49 different chemical, ergonomic, and physical exposures. Cumulative occupational exposures until baseline were assigned to each participant. Three analytical approaches were used: Exposome-Wide Association Study (ExWAS), Least Absolute Shrinkage and Selection Operator (LASSO), and Boruta Random Forest.
Results: In ECRHS, across the 3 analytical approaches, the most important exposures associated with increased COPD were heavy lifting, forward-bent posture, gases and fumes, mineral dust, house dust mites, and kneeling/squatting. In CONSTANCES, the most important exposures were diesel exhaust fumes, respirable crystalline silica, other solvents, organic solvents, indoor cleaning, and mineral dust. Differences [...]