Application of PTR-ToF-MS for detecting and tracking E-liquid aroma compounds in exhaled breath
Joris Meurs1, Philipp Kemkes1, Evangelia Sakkoula1
1Trace Detection Laboratory, Radboud University, Nijmegen 6525 AJ, The Netherlands.
Abstract:
Real-time characterization of e-cigarettes chemical constituents' persistence in the respiratory tract is essential for exposure assessment and health risk evaluation, but has not been previously demonstrated. In this study, proton transfer reaction-time-of-flight-mass spectrometry (PTR-ToF-MS) is integrated with multivariate statistical analysis to select volatile and semi-volatile organic compounds (VOCs) from commercially available e-liquid products and to track their washout kinetics. Participants (= 10) inhaled single puffs from an e-cigarette loaded with unflavoured e-liquid base, or cinnamon, or peppermint/menthol flavour. Exhaled breath samples were collected before and after e-cigarette puff and subsequently analysed with PTR-ToF-MS. Multivariate analysis identified compounds significantly elevated post-vaping (VIP1,0.05), including flavour components and potential thermal degradation products. Real-time washout monitoring (= 3) revealed that e-liquid-related VOCs can be retained for up to 32 min post-vaping, though substantial inter-individual variability was observed. These findings demonstrate the potential of PTR-ToF-MS as a non-invasive tool for real-time breath analysis of e-cigarette exposure, providing insight into the short-term kinetics and retention of e-cigarette constituents. This approach is well-suited for application in larger cohort studies aimed at exposure assessment and toxicokinetic evaluation.
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