Acute effects of personal exposure to fine particulate matter on salivary and urinary biomarkers of inflammation and oxidative stress in healthy adults.

Chemosphere

School of Public Health, Key Lab of Public Health Safety of the Ministry of Education and NHC Key Lab of Health Technology Assessment, Fudan University, Shanghai, 200032, China; Children's Hospital of Fudan University, National Center for Children's Health, Shanghai, 201102, China. Electronic address:

Published: June 2021

AI Article Synopsis

  • The study investigates the effect of short-term exposure to particulate matter (PM) on inflammation and oxidative stress biomarkers in healthy adults using non-invasive samples like saliva and urine.
  • Researchers found that salivary biomarkers (CRP and TNF-α) showed quicker responses to PM exposure, with significant increases observed within 12 hours, while urinary biomarkers (8-iso-PGF) showed changes after 24 hours.
  • The results suggest that key time windows for detecting these responses are within 6-12 hours for salivary markers and 24 hours or more for urinary markers, indicating the potential of using bio-samples to assess the impact of air pollution on health.

Article Abstract

Non-invasive bio-samples, such as saliva and urine, are promising tools for assessment of inflammation and oxidative stress biomarkers. Few studies have investigated potential responses of those biomarkers towards short-term PM exposure. We conducted a longitudinal study with 4 repeated examinations among 40 healthy, nonsmoking adults in Shanghai, China. Personal samplings were performed for PM exposure assessment. Then, five biomarkers, including C-reactive protein (CRP), tumor necrosis factor-α (TNF-α), alpha-1 antitrypsin (A1AT) in saliva and 8-Iso-Prostaglanding F (8-iso-PGF), total antioxidant capacity (TAC) in urine, were measured. We fitted linear mixed-effect models to evaluate short-term effect of personal PM exposure on salivary and urinary biomarkers, adjusting for potential confounders of meteorology, sociodemographic characteristics and biomarker detection. We also explored sensitive time windows of exposure for different biomarkers. We found robust associations of salivary CRP, TNF-α, and urinary 8-iso-PGF with PM exposure, and responses of salivary inflammatory markers occurred more acutely than urinary oxidative stress markers. For instance, a 10 μg/m increase in PM was associated with an elevation of 5.49% (95% CI: 1.17%, 9.99%) in CRP and 7.05% (95% CI: 1.29%, 13.13%) in TNF-α both at lag 12 h, and 6.97% (95% CI: 1.33%, 12.92%) in 8-iso-PGF at lag 01 d. Based on non-invasive samples, this study provided evidence on effect of PM exposure on responses of systematic inflammation and oxidative stress. Sub-daily (6-12 h) and daily (≥24 h) period after PM exposure might be sensitive time window to detect the responses of salivary (i.e. CRP, TNF) and urinary biomarkers (i.e. 8-iso-PGF), respectively.

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http://dx.doi.org/10.1016/j.chemosphere.2021.129906DOI Listing

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