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Toxicity of JUUL Fluids and Aerosols Correlates Strongly with Nicotine and Some Flavor Chemical Concentrations

View ORCID ProfileEsther E. Omaiye, Kevin J. McWhirter, View ORCID ProfileWentai Luo, James F. Pankow, View ORCID ProfilePrue Talbot
doi: https://doi.org/10.1101/490607
Esther E. Omaiye
†Environmental Toxicology Graduate Program, University of California Riverside, California, USA
¶Department of Molecular, Cell and Systems Biology, University of California, Riverside, California, USA
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  • ORCID record for Esther E. Omaiye
Kevin J. McWhirter
‡Department of Civil and Environmental Engineering, Portland State University, Portland, Oregon, USA
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Wentai Luo
‡Department of Civil and Environmental Engineering, Portland State University, Portland, Oregon, USA
§Department of Chemistry Portland State University. Portland, Oregon, USA
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James F. Pankow
‡Department of Civil and Environmental Engineering, Portland State University, Portland, Oregon, USA
§Department of Chemistry Portland State University. Portland, Oregon, USA
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Prue Talbot
¶Department of Molecular, Cell and Systems Biology, University of California, Riverside, California, USA
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  • For correspondence: talbot@ucr.edu
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ABSTRACT

While JUUL electronic cigarettes (ECs) have captured the majority of the EC market with a large fraction of their sales going to adolescents, little is known about their cytotoxicity and potential effects on health. The purpose of this study was to determine flavor chemical and nicotine concentrations in the eight currently marketed pre-filled JUUL EC cartridges (“pods”) and to evaluate the cytotoxicity of the different variants (e.g., “Cool Mint” and “Crème Brulee”) using in vitro assays. Nicotine and flavor chemicals were analyzed using gas chromatography/mass spectrometry in pod fluid before and after vaping and in the corresponding aerosols. 59 flavor chemicals were identified in JUUL pod fluids, and three were >1 mg/mL. Duplicate pods were similar in flavor chemical composition and concentration. Nicotine concentrations (average 60.9 mg/mL) were significantly higher than any EC products we have analyzed previously. Transfer efficiency of individual flavor chemicals that were >1mg/mL and nicotine from the pod fluid into aerosols was generally 35 - 80%. All pod fluids were cytotoxic at a 1:10 dilution (10%) in the MTT and neutral red uptake assays when tested with BEAS-2B lung epithelial cells. Most aerosols were cytotoxic in these assays at concentrations >1%. The cytotoxicity of aerosols was highly correlated with nicotine and ethyl maltol concentrations and moderately to weakly correlated with total flavor chemical concentration and menthol concentration. Our study demonstrates that: (1) some JUUL flavor pods have high concentrations of flavor chemicals that may make them attractive to youth, and (2) the concentrations of nicotine and some flavor chemicals (e.g. ethyl maltol) are high enough to be cytotoxic in acute in vitro assays, emphasizing the need to determine if JUUL products will lead to adverse health effects with chronic use.

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The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC-ND 4.0 International license.
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Posted December 09, 2018.
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Toxicity of JUUL Fluids and Aerosols Correlates Strongly with Nicotine and Some Flavor Chemical Concentrations
Esther E. Omaiye, Kevin J. McWhirter, Wentai Luo, James F. Pankow, Prue Talbot
bioRxiv 490607; doi: https://doi.org/10.1101/490607
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Toxicity of JUUL Fluids and Aerosols Correlates Strongly with Nicotine and Some Flavor Chemical Concentrations
Esther E. Omaiye, Kevin J. McWhirter, Wentai Luo, James F. Pankow, Prue Talbot
bioRxiv 490607; doi: https://doi.org/10.1101/490607

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