Short term associations of ambient nitrogen dioxide with daily total, cardiovascular, and respiratory mortality: multilocation analysis in 398 cities.
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Where this comes from
- Record sourced from PubMed, PMID 33762259.
- Also identified by DOI 10.1136/bmj.n534 and PMC identifier 7988454.
- Licence recorded as CC BY-NC.
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Abstract
To evaluate the short term associations between nitrogen dioxide (NO<sub>2</sub>) and total, cardiovascular, and respiratory mortality across multiple countries/regions worldwide, using a uniform analytical protocol. Two stage, time series approach, with overdispersed generalised linear models and multilevel meta-analysis. 398 cities in 22 low to high income countries/regions. Daily deaths from total (62.8 million), cardiovascular (19.7 million), and respiratory (5.5 million) causes between 1973 and 2018. On average, a 10 μg/m<sup>3</sup> increase in NO<sub>2</sub> concentration on lag 1 day (previous day) was associated with 0.46% (95% confidence interval 0.36% to 0.57%), 0.37% (0.22% to 0.51%), and 0.47% (0.21% to 0.72%) increases in total, cardiovascular, and respiratory mortality, respectively. These associations remained robust after adjusting for co-pollutants (particulate matter with aerodynamic diameter ≤10 μm or ≤2.5 μm (PM<sub>10</sub> and PM<sub>2.5</sub>, respectively), ozone, sulfur dioxide, and carbon monoxide). The pooled concentration-response curves for all three causes were almost linear without discernible thresholds. The proportion of deaths attributable to NO<sub>2</sub> concentration above the counterfactual zero level was 1.23% (95% confidence interval 0.96% to 1.51%) across the 398 cities. This multilocation study provides key evidence on the independent and linear associations between short term exposure to NO<sub>2</sub> and increased risk of total, cardiovascular, and respiratory mortality, suggesting that health benefits would be achieved by tightening the guidelines and regulatory limits of NO<sub>2</sub>.
Medical subject headings
- Air Pollutants
- Air Pollution
- Cardiovascular Diseases
- Global Health
- Nitrogen Dioxide
- Respiratory Tract Diseases
- Urban Health