Exposure to aldehyde cherry e-liquid flavoring and its vaping byproduct disrupt pulmonary surfactant biophysical function
Author(s)
Type
Journal Article
Abstract
Over the past decade, there has been a significant rise in the use of vaping devices, particularly among adolescents, raising concerns for effects on respiratory health. Pressingly, many recent vaping-related lung injuries are unexplained by current knowledge, and the overall implications of vaping for respiratory health are poorly understood. This study investigates the effect of hydrophobic vaping liquid chemicals on the pulmonary surfactant biophysical function. We focus on the commonly used flavoring benzaldehyde and its vaping byproduct, benzaldehyde propylene glycol acetal. The study involves rigorous testing of the surfactant biophysical function in Langmuir trough and constrained sessile drop surfactometer experiments with both protein-free synthetic surfactant and hydrophobic protein-containing clinical surfactant models. The study reveals that exposure to these vaping chemicals significantly interferes with the synthetic and clinical surfactant biophysical function. Further atomistic simulations reveal preferential interactions with SP-B and SP-C surfactant proteins. Additionally, data show surfactant lipid-vaping chemical interactions and suggest significant transfer of vaping chemicals to the experimental subphase, indicating a toxicological mechanism for the alveolar epithelium. Our study, therefore, reveals novel mechanisms for the inhalational toxicity of vaping. This highlights the need to reassess the safety of vaping liquids for respiratory health, particularly the use of aldehyde chemicals as vaping flavorings.
Date Issued
2024-01-23
Date Acceptance
2023-12-18
Citation
Environmental Science and Technology (Washington), 2024, 58 (3), pp.1495-1508
ISSN
0013-936X
Publisher
American Chemical Society
Start Page
1495
End Page
1508
Journal / Book Title
Environmental Science and Technology (Washington)
Volume
58
Issue
3
Copyright Statement
Copyright © 2024 The Authors. Published by American Chemical Society. This publication is licensed under
CC-BY 4.0.
CC-BY 4.0.
License URL
Identifier
https://www.ncbi.nlm.nih.gov/pubmed/38186267
Subjects
Adolescent
Aldehydes
Benzaldehydes
Electronic Nicotine Delivery Systems
Flavoring Agents
Humans
Pulmonary Surfactants
Surface-Active Agents
Vaping
e-cigarettes
exposure and human health
inhalation toxicology
lung surfactant
mechanistic toxicology
vaping
Publication Status
Published
Coverage Spatial
United States
Date Publish Online
2024-01-08