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Winter and spring variation in sources, chemical components and toxicological responses of urban air particulate matter samples in Guangzhou, China

微粒 环境化学 环境科学 遗传毒性 弹簧(装置) 生物质燃烧 季节性 化学成分 化学 气溶胶 生物 生态学 毒性 机械工程 工程类 有机化学
作者
Mo Yang,Pasi Jalava,Xinfeng Wang,Michael S. Bloom,Ari Leskinen,Henri Hakkarainen,Marjut Roponen,Mika Komppula,Qi-Zhen Wu,Shu-Li Xu,Li‐Zi Lin,Ru-Qing Liu,Li‐Wen Hu,Bo‐Yi Yang,Xiao‐Wen Zeng,Yunjiang Yu,Guang‐Hui Dong
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:845: 157382-157382 被引量:12
标识
DOI:10.1016/j.scitotenv.2022.157382
摘要

The sources and chemical components of urban air particles exhibit seasonal variations that may affect their hazardousness to human health. Our aims were to investigate winter and spring variation in particulate matter (PM) sources, components and toxicological responses of different PM size fractions from samples collected in Guangzhou, China. Four size-segregated PM samples (PM10–2.5, PM2.5–1, PM1–0.2, and PM0.2) were collected separately during winter (December 2017 and January 2018) and spring (March 2018). All PM samples were analyzed for chemical components and characterized by source. RAW 264.7 macrophages were exposed to four doses of PM samples for 24 h. Cytotoxicity, oxidation, cell cycle, genotoxicity and inflammatory parameters were tested. PM concentrations were higher in the winter samples and caused more severe cytotoxicity and oxidative damage than to PM in the spring samples. PM in winter and spring led to increases in cell cycle and genotoxicity. The trends of size-segregated PM components were consistent in winter and spring samples. Metallic elements and PAHs were found in the largest concentrations in winter PM, but ions were found in the largest concentrations in spring PM. metallic elements, PAHs and ions in size-segregated PM samples were associated with most toxicological endpoints. Soil dust and biomass burning were the main sources of PM in winter, whereas traffic exhaust and biomass burning was the main source with of spring PM. Our results suggest that the composition of PM samples from Guangzhou differed during winter and spring, which led to strong variations in toxicological responses. The results demonstrate the importance of examining a different particle sizes, compositions and sources across different seasons, for human risk assessment.
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