Effects of Controlled Ozone Exposure on Circulating microRNAs and Vascular and Coagulation Biomarkers: A Mediation Analysis

Author:

Chen Hao1ORCID,Masood Syed2,Rappold Ana G.3ORCID,Diaz-Sanchez David3,Samet James M.3,Tong Haiyan3

Affiliation:

1. Oak Ridge Institute for Science and Education, Oak Ridge, TN 37830, USA

2. Curriculum in Toxicology and Environmental Medicine, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA

3. Public Health and Integrated Toxicology Division, Center for Public Health and Environmental Assessment, U.S. Environmental Protection Agency, 104 Mason Farm Rd, Chapel Hill, NC 27514, USA

Abstract

Exposure to ozone (O3) is associated with adverse respiratory and cardiovascular outcomes. Alterations in circulating microRNAs (miRNAs) may contribute to the adverse vascular effects of O3 exposure through inter-cellular communication resulting in post-transcriptional regulation of messenger RNAs by miRNAs. In this study, we investigated whether O3 exposure induces alterations in circulating miRNAs that can mediate effects on downstream vascular and coagulation biomarkers. Twenty-three healthy male adults were exposed on successive days to filtered air and 300 ppb O3 for 2 h. Circulating miRNA and protein biomarkers were quantified after each exposure session. The data were subjected to mixed-effects model and mediation analyses for the statistical analyses. The results showed that the expression level of multiple circulating miRNAs (e.g., miR-19a-3p, miR-34a-5p) was significantly associated with O3 exposure. Pathway analysis showed that these miRNAs were predictive of changing levels of downstream biomarkers [e.g., D-dimer, C-reactive protein, tumor necrosis factor α (TNFα)]. Mediation analysis showed that miR-19a-3p may be a significant mediator of O3-exposure-induced changes in blood TNFα levels [0.08 (0.01, 0.15), p = 0.02]. In conclusion, this preliminary study showed that O3 exposure of healthy male adults resulted in changes in circulating miRNAs, some of which may mediate vascular effects of O3 exposure.

Funder

U.S. Environmental Protection Agency Intramural Research Program

Publisher

MDPI AG

Subject

Genetics,Molecular Biology,Biochemistry

Reference46 articles.

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2. American Lung Association (2023, January 31). The “State of the Air” 2021 Report. Available online: https://www.lung.org/getmedia/17c6cb6c-8a38-42a7-a3b0-6744011da370/sota-2021.pdf.

3. Ozone Pollution: A Major Health Hazard Worldwide;Zhang;Front. Immunol.,2019

4. Respiratory Responses to Ozone Exposure. MOSES (The Multicenter Ozone Study in Older Subjects);Arjomandi;Am. J. Respir. Crit. Care Med.,2018

5. Effect of antioxidant supplementation on ozone-induced lung injury in human subjects;Samet;Am. J. Respir. Crit. Care Med.,2001

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