Literature DB >> 29161504

Effects of Solvent and Temperature on Free Radical Formation in Electronic Cigarette Aerosols.

Zachary T Bitzer1, Reema Goel2, Samantha M Reilly2, Jonathan Foulds2, Joshua Muscat2, Ryan J Elias1, John P Richie2.   

Abstract

The ever-evolving market of electronic cigarettes (e-cigarettes) presents a challenge for analyzing and characterizing the harmful products they can produce. Earlier we reported that e-cigarette aerosols can deliver high levels of reactive free radicals; however, there are few data characterizing the production of these potentially harmful oxidants. Thus, we have performed a detailed analysis of the different parameters affecting the production of free radical by e-cigarettes. Using a temperature-controlled e-cigarette device and a novel mechanism for reliably simulating e-cigarette usage conditions, including coil activation and puff flow, we analyzed the effects of temperature, wattage, and e-liquid solvent composition of propylene glycol (PG) and glycerol (GLY) on radical production. Free radicals in e-cigarette aerosols were spin-trapped and analyzed using electron paramagnetic resonance. Free radical production increased in a temperature-dependent manner, showing a nearly 2-fold increase between 100 and 300 °C under constant-temperature conditions. Free radical production under constant wattage showed an even greater increase when going from 10 to 50 W due, in part, to higher coil temperatures compared to constant-temperature conditions. The e-liquid PG content also heavily influenced free radical production, showing a nearly 3-fold increase upon comparison of ratios of 0:100 (PG:GLY) and 100:0 (PG:GLY). Increases in PG content were also associated with increases in aerosol-induced oxidation of biologically relevant lipids. These results demonstrate that the production of reactive free radicals in e-cigarette aerosols is highly solvent dependent and increases with an increase in temperature. Radical production was somewhat dependent on aerosol production at higher temperatures; however, disproportionately high levels of free radicals were observed at ≥100 °C despite limited aerosol production. Overall, these findings suggest that e-cigarettes can be designed to minimize exposure to these potentially harmful products.

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Year:  2017        PMID: 29161504      PMCID: PMC6471512          DOI: 10.1021/acs.chemrestox.7b00116

Source DB:  PubMed          Journal:  Chem Res Toxicol        ISSN: 0893-228X            Impact factor:   3.739


  31 in total

1.  Electronic Cigarette Vapor with Nicotine Causes Airway Mucociliary Dysfunction Preferentially via TRPA1 Receptors.

Authors:  Samuel Chung; Nathalie Baumlin; John S Dennis; Robert Moore; Sebastian F Salathe; Phillip L Whitney; Juan Sabater; William M Abraham; Michael D Kim; Matthias Salathe
Journal:  Am J Respir Crit Care Med       Date:  2019-11-01       Impact factor: 21.405

2.  Chronic intermittent electronic cigarette exposure induces cardiac dysfunction and atherosclerosis in apolipoprotein-E knockout mice.

Authors:  Jorge Espinoza-Derout; Kamrul M Hasan; Xuesi M Shao; Maria C Jordan; Carl Sims; Desean L Lee; Satyesh Sinha; Zena Simmons; Norma Mtume; Yanjun Liu; Kenneth P Roos; Amiya P Sinha-Hikim; Theodore C Friedman
Journal:  Am J Physiol Heart Circ Physiol       Date:  2019-06-07       Impact factor: 4.733

3.  Emissions of Free Radicals, Carbonyls, and Nicotine from the NIDA Standardized Research Electronic Cigarette and Comparison to Similar Commercial Devices.

Authors:  Zachary T Bitzer; Reema Goel; Samantha M Reilly; Gurkirat Bhangu; Neil Trushin; Jonathan Foulds; Joshua Muscat; John P Richie
Journal:  Chem Res Toxicol       Date:  2018-12-19       Impact factor: 3.739

4.  Tracing the movement of electronic cigarette flavor chemicals and nicotine from refill fluids to aerosol, lungs, exhale, and the environment.

Authors:  Careen Khachatoorian; Kevin J McWhirter; Wentai Luo; James F Pankow; Prue Talbot
Journal:  Chemosphere       Date:  2021-07-10       Impact factor: 7.086

5.  Effect of flavoring chemicals on free radical formation in electronic cigarette aerosols.

Authors:  Zachary T Bitzer; Reema Goel; Samantha M Reilly; Ryan J Elias; Alexey Silakov; Jonathan Foulds; Joshua Muscat; John P Richie
Journal:  Free Radic Biol Med       Date:  2018-03-13       Impact factor: 7.376

6.  Effects of electronic cigarette liquid solvents propylene glycol and vegetable glycerin on user nicotine delivery, heart rate, subjective effects, and puff topography.

Authors:  Tory R Spindle; Soha Talih; Marzena M Hiler; Nareg Karaoghlanian; Matthew S Halquist; Alison B Breland; Alan Shihadeh; Thomas Eissenberg
Journal:  Drug Alcohol Depend       Date:  2018-05-01       Impact factor: 4.492

7.  Free Radical, Carbonyl, and Nicotine Levels Produced by Juul Electronic Cigarettes.

Authors:  Samantha M Reilly; Zachary T Bitzer; Reema Goel; Neil Trushin; John P Richie
Journal:  Nicotine Tob Res       Date:  2019-08-19       Impact factor: 4.244

8.  A custom-built low-cost chamber for exposing rodents to e-cigarette aerosol: practical considerations.

Authors:  Markus Hilpert; Vesna Ilievski; Maxine Coady; Maria Andrade-Gutierrez; Beizhan Yan; Steven N Chillrud; Ana Navas-Acien; Norman J Kleiman
Journal:  Inhal Toxicol       Date:  2019-12-04       Impact factor: 2.724

Review 9.  Effects of Electronic Nicotine Delivery Systems and Cigarettes on Systemic Circulation and Blood-Brain Barrier: Implications for Cognitive Decline.

Authors:  Nathan A Heldt; Nancy Reichenbach; Hannah M McGary; Yuri Persidsky
Journal:  Am J Pathol       Date:  2020-12-04       Impact factor: 4.307

10.  Ascorbic Acid Prevents Vascular Endothelial Dysfunction Induced by Electronic Hookah (Waterpipe) Vaping.

Authors:  Mary Rezk-Hanna; Douglas R Seals; Matthew J Rossman; Rajat Gupta; Charlie O Nettle; Angelica Means; Daniel Dobrin; Chiao-Wei Cheng; Mary-Lynn Brecht; Zab Mosenifar; Jesus A Araujo; Neal L Benowitz
Journal:  J Am Heart Assoc       Date:  2021-02-20       Impact factor: 6.106

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