Association between Outdoor Air Pollution and Fatal Acute Myocardial Infarction in Lithuania between 2006 and 2015: A Time Series Design

Author:

Vaičiulis Vidmantas12,Venclovienė Jonė34ORCID,Miškinytė Auksė3ORCID,Ustinavičienė Rūta2,Dėdelė Audrius3ORCID,Kalinienė Gintarė12,Lukšienė Dalia24ORCID,Tamošiūnas Abdonas4ORCID,Seiduanova Laura5ORCID,Radišauskas Ričardas24ORCID

Affiliation:

1. Health Research Institute, Lithuanian University of Health Sciences, Tilzes St. 18, 47181 Kaunas, Lithuania

2. Department of Environmental and Occupational Medicine, Lithuanian University of Health Sciences, Tilzes St. 18, 47181 Kaunas, Lithuania

3. Department of Environmental Sciences, Vytautas Magnus University, Donelaičio St. 58, 44248 Kaunas, Lithuania

4. Institute of Cardiology, Lithuanian University of Health Sciences, Sukileliu Ave. 15, 50162 Kaunas, Lithuania

5. Department of Health Politics and Management, School of Public Health, Asfendiyarov Kazakh National Medical University, Almaty 050000, Kazakhstan

Abstract

Background. Air pollution has a significant effect on human health and there is a broad body of evidence showing that exposure to air pollution is associated with an increased risk of adverse health effects. The main objective of this study was to assess the association of traffic-related air pollutants with fatal AMI during the ten-year period. Methods. The study was conducted in Kaunas city, where the WHO MONICA register included a total of 2273 adult cases of fatal AMI cases during the 10-year study period. We focused on the period between 2006 and 2015. The associations between exposure to traffic-related air pollution and the risk of fatal AMI were evaluated by using a multivariate Poisson regression model, RR presented per an increase in IQR. Results. It was found that the risk of fatal AMI was significantly higher in all subjects (RR 1.06; 95% CI 1.00–1.12) and women (RR 1.12; 95% CI 1.02–1.22) when the concentration of PM10 in the ambient air was increased 5–11 days before the onset of AMI, adjusting for NO2 concentration. The effect was stronger during spring in all subjects (RR 1.12; 95% CI 1.03–1.22), in men (RR 1.13; 95% CI 1.01–1.26), in younger-aged (RR 1.15; 95% CI 1.03–1.28), and in winter in women (RR 1.24; 95% CI 1.03–1.50). Conclusions. Our findings show that ambient air pollution increases the risk of fatal AMI, and this pertains to PM10 specifically.

Funder

European Social Fund

Publisher

MDPI AG

Subject

Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health

Reference73 articles.

1. European Environment Agency (2019). Air Quality in Europe: 2019 Report, Publications Office; European Environment Agency. Available online: https://data.europa.eu/doi/10.2800/822355.

2. Outdoor air quality and human health: An overview of reviews of observational studies;Markozannes;Environ. Pollut.,2022

3. (2019). Integrated Science Assessment (ISA) for Particulate Matter (Final Report) U.S., EPA/600/R-19/188.

4. Pollution and health: A progress update;Fuller;Lancet Planet. Health,2022

5. World Health Organization (2006). Regional Office for Europe. Air Quality Guidelines: Global Update 2005: Particulate Matter, Ozone, Nitrogen Dioxide and Sulphur Dioxide, World Health Organization. Regional Office for Europe. Available online: https://apps.who.int/iris/handle/10665/107823.

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