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Cell-specific oxidative stress and cytotoxicity after wildfire coarse particulate matter instillation into mouse lung
Keisha M Williams1, Lisa M Franzi, Jerold A Last
1Pulmonary, Critical Care, and Sleep Medicine, School of Medicine, University of California, Davis, CA, USA.
Abstract:
Our previous work has shown that coarse particulate matter (PM(10-2.5)) from wildfire smoke is more toxic to lung macrophages on an equal dose (by mass) basis than coarse PM isolated from normal ambient air, as evidenced by decreased numbers of macrophages in lung lavage fluid 6 and 24hours after PM instillation into mouse lungs in vivo and by cytotoxicity to a macrophage cell line observed directly in vitro. We hypothesized that pulmonary macrophages from mice instilled with wildfire coarse PM would undergo more cytotoxicity than macrophages from controls, and that there would be an increase in oxidative stress in their lungs. Cytotoxicity was quantified as decreased viable macrophages and increased percentages of dead macrophages in the bronchoalveolar lavage fluid (BALF) of mice instilled with wildfire coarse PM. At 1hour after PM instillation, we observed both decreased numbers of viable macrophages and increased dead macrophage percentages as compared to controls. An increase in free isoprostanes, an indicator of oxidative stress, from control values of 28.1±3.2pg/mL to 83.9±12.2pg/mL was observed a half-hour after PM instillation. By 1hour after PM instillation, isoprostane values had returned to 30.4±7.6pg/mL, not significantly different from control concentrations. Lung sections from mice instilled with wildfire coarse PM showed rapid Clara cell responses, with decreased intracellular staining for the Clara cell secretory protein CCSP 1hour after wildfire PM instillation. In conclusion, very rapid cytotoxicity occurs in pulmonary macrophages and oxidative stress responses are seen 0.5-1hour after wildfire coarse PM instillation. These results define early cellular and biochemical events occurring in vivo and support the hypothesis that oxidative stress-mediated macrophage toxicity plays a key role in the initial response of the mouse lung to wildfire PM exposure.
Insights
Wildfire smoke coarse particulate matter (PM(10-2.5)) causes rapid lung macrophage damage and oxidative stress in mice. These findings highlight the toxicity of wildfire PM and its role in early lung injury.
Area of Science:
- Environmental Health
- Toxicology
- Pulmonary Medicine
Background:
- Coarse particulate matter (PM(10-2.5)) from wildfire smoke is more toxic to lung macrophages than ambient PM.
- Previous studies indicated decreased macrophage numbers and in vitro cytotoxicity.
Purpose of the Study:
- To investigate cytotoxicity and oxidative stress in pulmonary macrophages exposed to wildfire coarse PM.
- To examine early cellular responses in mouse lungs following wildfire PM instillation.
Main Methods:
- Mice were instilled with wildfire coarse PM or control PM.
- Cytotoxicity was assessed by viable and dead macrophage counts in bronchoalveolar lavage fluid (BALF).
- Oxidative stress was measured by free isoprostane levels; Clara cell responses were evaluated via CCSP staining.
Main Results:
- Wildfire PM caused decreased viable and increased dead macrophages within 1 hour.
- Free isoprostane levels significantly increased 30 minutes post-instillation, indicating oxidative stress.
- Rapid Clara cell responses, including decreased CCSP staining, were observed 1 hour after wildfire PM exposure.
Conclusions:
- Wildfire coarse PM induces rapid cytotoxicity in pulmonary macrophages.
- Oxidative stress and early cellular responses occur within 0.5-1 hour of exposure.
- Oxidative stress-mediated macrophage toxicity is a key factor in the initial lung response to wildfire PM.

