Coarse Particulate Air Pollution and Daily Mortality: A Global Study in 205 Cities.

Liu, Cong; Cai, Jing; Chen, Renjie; Sera, Francesco; Guo, Yuming; Tong, Shilu; Li, Shanshan; Lavigne, Eric et al. · Am J Respir Crit Care Med · 2022

cross_sectional · Level IV

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Abstract

<b>Rationale:</b> The associations between ambient coarse particulate matter (PM<sub>2.5-10</sub>) and daily mortality are not fully understood on a global scale. <b>Objectives:</b> To evaluate the short-term associations between PM<sub>2.5-10</sub> and total, cardiovascular, and respiratory mortality across multiple countries/regions worldwide. <b>Methods:</b> We collected daily mortality (total, cardiovascular, and respiratory) and air pollution data from 205 cities in 20 countries/regions. Concentrations of PM<sub>2.5-10</sub> were computed as the difference between inhalable and fine PM. A two-stage time-series analytic approach was applied, with overdispersed generalized linear models and multilevel meta-analysis. We fitted two-pollutant models to test the independent effect of PM<sub>2.5-10</sub> from copollutants (fine PM, nitrogen dioxide, sulfur dioxide, ozone, and carbon monoxide). Exposure-response relationship curves were pooled, and regional analyses were conducted. <b>Measurements and Main Results:</b> A 10 μg/m<sup>3</sup> increase in PM<sub>2.5-10</sub> concentration on lag 0-1 day was associated with increments of 0.51% (95% confidence interval [CI], 0.18%-0.84%), 0.43% (95% CI, 0.15%-0.71%), and 0.41% (95% CI, 0.06%-0.77%) in total, cardiovascular, and respiratory mortality, respectively. The associations varied by country and region. These associations were robust to adjustment by all copollutants in two-pollutant models, especially for PM<sub>2.5</sub>. The exposure-response curves for total, cardiovascular, and respiratory mortality were positive, with steeper slopes at lower exposure ranges and without discernible thresholds. <b>Conclusions:</b> This study provides novel global evidence on the robust and independent associations between short-term exposure to ambient PM<sub>2.5-10</sub> and total, cardiovascular, and respiratory mortality, suggesting the need to establish a unique guideline or regulatory limit for daily concentrations of PM<sub>2.5-10</sub>.

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