Formaldehyde and the transient receptor potential ankyrin-1 contribute to electronic cigarette aerosol-induced endothelial dysfunction in mice

Author:

Jin Lexiao12,Richardson Andre12,Lynch Jordan2,Lorkiewicz Pawel1234ORCID,Srivastava Shweta24,Fryar Laura5,Miller Alexis12,Theis Whitney12,Shirk Gregg12,Bhatnagar Aruni1234,Srivastava Sanjay1234,Riggs Daniel W1234,Conklin Daniel J1234

Affiliation:

1. American Heart Association-Tobacco Regulation and Addiction Center, University of Louisville , Louisville, KY 40202, United States

2. Christina Lee Brown Envirome Institute, University of Louisville , Louisville, KY 40202, United States

3. Division of Environmental Medicine, Department of Medicine, University of Louisville , Louisville, KY 40202, United States

4. Superfund Research Center, University of Louisville , Louisville, KY 40202, United States

5. School of Medicine, University of Louisville , Louisville, KY 40202, United States

Abstract

Abstract Electronic nicotine delivery systems (ENDS) aerosol exposures can induce endothelial dysfunction (ED) in healthy young humans and animals. Thermal degradation of ENDS solvents, propylene glycol, and vegetable glycerin (PG: VG), generates abundant formaldehyde (FA) and other carbonyls. Because FA can activate the transient receptor potential ankyrin-1 (TRPA1) sensor, we hypothesized that FA in ENDS aerosols provokes TRPA1-mediated changes that include ED and “respiratory braking”—biomarkers of harm. To test this, wild-type (WT) and TRPA1-null mice were exposed by inhalation to either filtered air, PG: VG-derived aerosol, or FA (5 ppm). Short-term exposures to PG: VG and FA-induced ED in female WT but not in female TRPA1-null mice. Moreover, acute exposures to PG: VG and FA stimulated respiratory braking in WT but not in TRPA1-null female mice. Urinary metabolites of FA (ie, N-1,3-thiazolidine-4-carboxylic acid, TCA; N-1,3-thiazolidine-4-carbonyl glycine, TCG) and monoamines were measured by LC-MS/MS. PG: VG and FA exposures significantly increased urinary excretion of both TCA and TCG in both WT and TRPA1-null mice. To confirm that inhaled FA directly contributed to urinary TCA, mice were exposed to isotopic 13C-FA gas (1 ppm, 6 h). 13C-FA exposure significantly increased the urine level of 13C-TCA in the early collection (0 to 3 h) supporting a direct relationship between inhaled FA and TCA. Collectively, these data suggest that ENDS use may increase CVD risk dependent on FA, TRPA1, and catecholamines, yet independently of either nicotine or flavorants. This study supports that levels of FA in ENDS-derived aerosols should be lowered to mitigate CVD risk in people who use ENDS.

Funder

National Institutes of Health

Jewish Heritage Fund for Excellence Research Enhancement

JHFE REG

Publisher

Oxford University Press (OUP)

Reference54 articles.

1. Sensory irritation of the upper airways by airborne chemicals;Alarie;Toxicol Appl Pharmacol,1973

2. TRPA1 receptor localisation in the human peripheral nervous system and functional studies in cultured human and rat sensory neurons;Anand;Neurosci Lett,2008

3. Cigarette smoke-induced neurogenic inflammation is mediated by alpha,beta-unsaturated aldehydes and the TRPA1 receptor in rodents;Andre;JClinInvest,2008

4. Acute and chronic sympathomimetic effects of e-cigarette and tobacco cigarette smoking: role of nicotine and non-nicotine constituents;Arastoo;Am J Physiol Heart Circ Physiol,2020

5. Vascular dysfunction and oxidative stress caused by acute formaldehyde exposure in female adults;Augenreich;Am J Physiol Heart Circ Physiol,2020

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