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PMID: 41390972 已发表 · ppublish 英语

Lung injury, oxidative stress, and impaired functioning in a model of prolonged ozone exposure in female mice are associated with macrophage proinflammatory and profibrotic activation and altered bioenergetics.

Sunil VR, Vayas KN, Radbel J, Smith LC, Meshanni JA, Lee JM, Weinstock D, Abramova E, Shmarakov IO, Gow AJ, Laskin JD, Laskin DL

摘要

Prolonged exposure to ozone causes lung injury and persistent inflammation, pathologies associated with emphysema and asthma. Herein, we characterized inflammatory cells in the lungs using a murine model of prolonged ozone exposure, with the long-term goal of assessing their role in disease pathogenesis. Mice were exposed to air or ozone (1.5 ppm, 2 h, 2×/wk, 6 wk). Bronchoalveolar lavage fluid (BAL) and cells and lung tissue were collected 24 h after the final exposure. Alveolar/bronchiolar hyperplasia, epithelial degeneration, and mononuclear cell infiltration were observed following ozone exposure; BAL protein, cells, fibrinogen, and SP-A and SP-D were also increased, along with markers of oxidative stress, and impaired pulmonary function. Flow cytometric analysis of infiltrating myeloid cells revealed that after ozone exposure, the majority of these cells were mature infiltrating macrophages. These were comprised mainly of anti-inflammatory/profibrotic macrophages, with a smaller number of proinflammatory macrophages. Proinflammatory genes (Il1β, Ccl3, Ccl17, Ccl22, Tnfα) and NF-κB activity were increased in BAL cells from ozone-exposed mice (>97% macrophages); profibrotic genes (Mmp12, Mmp28, Tgfβ), but not anti-inflammatory genes (Il10, Arg1), were also upregulated. Following ozone exposure, glycolytic activity and oxidative phosphorylation increased in BAL cells, consistent with proinflammatory and profibrotic activation, respectively. These findings are important as they provide a rationale for evaluating the role of inflammatory macrophages in the pathophysiological response to prolonged ozone exposure. Impact statement: These studies are significant as they may lead to the identification of novel therapeutic approaches for reducing inflammatory lung disease caused by long-term exposure to inhaled ozone.

关键词
bioenergetics lung macrophages oxidative stress ozone pulmonary function
文献信息
期刊
Toxicological sciences : an official journal of the Society of Toxicology
期刊简称
Toxicol Sci
ISSN
1096-0929
发表日期
2026-02-18
语言
英语
国家/地区
United States
NLM ID
9805461
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