Related Experiment Video
Updated: Jan 29, 2026

Induction of Ocular Surface Inflammation and Collection of Involved Tissues
Published on: August 4, 2022
Seasonal Variation in PM2.5 Composition Modulates Oxidative Stress and Neutrophilic Inflammation with Involvement of
Duo Wang1, Zirui Zeng2, Aya Nawata3
1Department of Radiobiology and Hygiene Management, Institute of Industrial Ecological Sciences, University of Occupational and Environmental Health, Japan, 1-1 Iseigaoka, Yahatanishi-ku, Kitakyushu 807-8555, Japan.
None:
Seasonal fluctuations in the chemical composition of fine particulate matter (PM2.5) are known to influence its toxicological properties; however, their integrated biological effects remain incompletely understood. In this study, PM2.5 was continuously collected over two consecutive years at a single urban site in Japan and classified by season. The samples were comprehensively characterized for ionic species, metals, carbonaceous fractions, and polycyclic aromatic hydrocarbons (PAHs), and their pulmonary effects were evaluated in vivo following intratracheal administration in mice. Seasonal PM2.5 exhibited pronounced compositional differences, with higher levels of secondary inorganic aerosol components in summer and enrichment of PAHs and mineral-associated components in winter. These seasonal differences translated into distinct biological responses. Reactive oxygen species (ROS) production (1.6-2.7-fold increase) and bronchoalveolar lavage (BAL) neutrophil infiltration were strongly associated with PAH-rich PM2.5, whereas interleukin-1α (IL-1α) showed robust positive correlations with mineral components, including K+, Ca2+, and Mg2+, which were predominantly enriched in winter PM2.5. In contrast, secondary inorganic aerosol species displayed a limited capacity to induce IL-1α. Compared with summer samples, winter PM2.5 induced significantly higher levels of ROS production and IL-1α (approximately 1.5-2.6-fold increase). Using TLR2- and TLR4-deficient mice, we further demonstrated that PM2.5-induced increases in BAL cell counts, ROS, IL-6, and TNF-α were partially attenuated in TLR4 knockout mice, indicating a contributory but not exclusive role for TLR4 signaling in PM2.5-driven pulmonary inflammation. Collectively, these findings demonstrate that seasonal variations in PM2.5 composition, not particle mass alone, critically shape oxidative stress and innate immune responses in the lungs. In particular, winter PM2.5 enriched in mineral-associated components preferentially activates IL-1α-mediated alarmin pathways, underscoring the importance of the particle composition in determining seasonal air pollution toxicity.
Related Concept Videos
Inflammation
Nitric Oxide Signaling Pathway
Seasoning of Wood
Achieving equilibrium moisture content is the goal of seasoning; this is the point where the wood's moisture content stabilizes to align with the moisture levels of the surrounding environment. Proper...
Oxidation Numbers
What is Variation?
The range, standard deviation, standard error, and variance are the different measures of variation.
Range: The range is the difference between its maximum and...
Conservative Site-specific Recombination and Phase Variation
The recognition sites for Cre recombinase called LoxP...

