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Sources, chemical components, and toxicological responses of size segregated urban air PM samples in high air pollution season in Guangzhou, China. | LitMetric

AI Article Synopsis

  • This study investigates the sources and toxicological effects of particulate matter (PM) collected in Guangzhou during a high air pollution season, focusing on the relationships between PM size, its chemical components, and how they affect cellular health.
  • The research shows that smaller PM contains more water-soluble ions and PAHs, while larger PM includes more metallic elements, with traffic exhaust, soil dust, and biomass burning being significant sources of pollution.
  • Findings reveal exposure to PM causes cell damage, including reduced mitochondrial activity and increased oxidative stress, with coarse PM also causing notable inflammatory effects, underscoring the importance of considering all PM sizes in health assessments.

Article Abstract

The sources, sizes, components, and toxicological responses of particulate matter (PM) have demonstrated remarkable spatiotemporal variability. However, associations between components, sources, and toxicological effects in different-sized PM remain unclear. The purposes of this study were to 1) determine the sources of PM chemical components, 2) investigate the associations between components and toxicology of PM from Guangzhou high air pollution season. We collected size-segregated PM samples (PM, PM, PM, PM) from December 2017 to March 2018 in Guangzhou. PM sources and components were analyzed. RAW264.7 mouse macrophages were treated with PM samples for 24 h followed by measurements of toxicological responses. The concentrations of PM and PM were relatively high in all samples. Water-soluble ions and PAHs were more abundant in smaller-diameter PM, while metallic elements were more enriched in larger-diameter PM. Traffic exhaust, soil dust, and biomass burning/petrochemical were the most important sources of PAHs, metals and ions, respectively. The main contributions to PM were soil dust, coal combustion, and biomass burning/petrochemical. Exposure to PM induced the most significant reduction of cell mitochondrial activity, oxidative stress and inflammatory response, whereas DNA damage, an increase of Sub G1/G0 population, and impaired cell membrane integrity were most evident with PM exposure. There were moderate or strong correlations between most single chemicals and almost all toxicological endpoints as well as between various toxicological outcomes. Our findings highlight those various size-segregated PM-induced toxicological effects in cells, and identify chemical components and sources of PM that play the key role in adverse intracellular responses. Although fine and ultrafine PM have attracted much attention, the inflammatory damage caused by coarse PM cannot be ignored.

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Source
http://dx.doi.org/10.1016/j.scitotenv.2022.161092DOI Listing

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