Abstract
Rationale: The impact of a broad range of occupational exposures on subclinical interstitial lung disease (ILD) has not been studied. Objectives: To determine whether occupational exposures to vapors, gas, dust, and fumes (VGDF) are associated with high-attenuation areas (HAA) and interstitial lung abnormalities (ILA), which are quantitative and qualitative computed tomography (CT)-based measurements of subclinical ILD, respectively. Methods: We performed analyses of participants enrolled in MESA (Multi-Ethnic Study of Atherosclerosis), a population-based cohort aged 45-84 years at recruitment. HAA was measured at baseline and on serial cardiac CT scans in 5, 702 participants. ILA was ascertained in a subset of 2, 312 participants who underwent full-lung CT scanning at 10-year follow-up. Occupational exposures were assessed by self-reported VGDF exposure and by job-exposure matrix (JEM). Linear mixed models and logistic regression were used to determine whether occupational exposures were associated with log-transformed HAA and ILA. Models were adjusted for age, sex, race/ethnicity, education, employment status, tobacco use, and scanner technology. Measurements and Main Results: Each JEM score increment in VGDF exposure was associated with 2.64% greater HAA (95% confidence interval [CI], 1.23-4.19%). Self-reported vapors/gas exposure was associated with an increased odds of ILA among those currently employed (1.76-fold; 95% CI, 1.09-2.84) and those less than 65 years old (1.97-fold; 95% CI, 1.16-3.35). There was no consistent evidence that occupational exposures were associated with progression of HAA over the follow-up period. Conclusions: JEM-assigned and self-reported exposures to VGDF were associated with measurements of subclinical ILD in community-dwelling adults.
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Sack, C. S., Doney, B. C., Podolanczuk, A. J., Hooper, L. G., Seixas, N. S., Hoffman, E. A., … Kaufman, J. D. (2017). Occupational exposures and subclinical interstitial lung disease the MESA (Multi-Ethnic Study of Atherosclerosis) air and lung studies. American Journal of Respiratory and Critical Care Medicine, 196(8), 1031–1039. https://doi.org/10.1164/rccm.201612-2431OC
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