Background Silicosis remains a major occupational health concern in respirable crystalline silica (RCS)-exposed workers. Exhaled breath analysis using volatile organic compound (VOC) profiling has emerged as a promising non-invasive approach for early disease detection. This feasibility study evaluated multicapillary column/ion mobility spectrometry (MCC/IMS) based VOC profiling for differentiating silicosis from other respiratory conditions and healthy controls in an occupational health setting. Methods We conducted a multicentre, cross-sectional observational study employing MCC/IMS to identify VOC patterns. Breath data were reduced to principal components and used in logistic lasso regression to develop predictive models. Internal and external validation assessed model performance, and subgroup analyses explored the impact of comorbidities and spirometry abnormalities. Results A total of 185 participants were enrolled, including 24 COPD patients, 26 with benign asbestos-related diseases (BARD), and 32 with confirmed silicosis, alongside 25 healthy controls and 78 RCS-exposed controls. Silicosis was distinguished from BARD and COPD with 100% and 87.5% accuracy (AUC ROC 1.00 and 0.89), respectively. Comparison with healthy RCS-exposed controls yielded 87.8% accuracy with 98.5% sensitivity (AUC ROC 0.58), improving to 82.8% accuracy and AUC ROC 0.90 when considering spirometry abnormalities. Eight VOCs, notably P13 and P14, were identified as key discriminators. Conclusion MCC/IMS-based breath analysis shows promise as a rapid, portable, and non-invasive technique for early detection of silicosis in RCS-exposed workers. Future research should validate these findings in larger cohorts, integrate cross-validation of candidate biomarkers across analytical platforms, and establish standardized protocols to enable routine implementation in occupational health surveillance.
Loon et al. (Fri,) studied this question.