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In Vivo Assessment of Alveolar Macrophage Efferocytosis Following Ozone Exposure
Published on: October 22, 2019
Microvesicle-Derived miRNAs Regulate Proinflammatory Macrophage Activation in the Lung Following Ozone Exposure
Jonathan M Carnino1, Heedoo Lee1, Ley Cody Smith2
1Division of Pulmonary and Critical Care Medicine, Department of Medicine, School of Medicine, Boston University, Boston, Massachusetts 02118, USA.
Abstract:
Ozone is a ubiquitous air pollutant that causes lung damage and altered functioning. Evidence suggests that proinflammatory macrophages contribute to ozone toxicity. Herein, we analyzed the role of extracellular vesicles (EVs) and microRNA (miRNA) cargo in ozone-induced macrophage activation. Exposure of mice to ozone (0.8 ppm, 3 h) resulted in increases in bronchoalveolar lavage fluid EVs, which were comprised predominantly of microvesicles (MVs). NanoFACS analysis revealed that MVs generated following both air and ozone exposure was largely from CD45+ myeloid cells; these MVs were readily taken up by macrophages. Functionally, MVs from ozone, but not air treated mice, upregulated mRNA expression of inflammatory proteins in macrophages including inducible nitric oxide synthase (iNOS), CXCL-1, CXCL-2, and interleukin (IL)-1β. The miRNA profile of MVs in bronchoalveolar lavage fluid (BALF) was altered after ozone exposure; thus, increases in miR-21, miR-145, miR320a, miR-155, let-7b, miR744, miR181, miR-17, miR-92a, and miR-199a-3p were observed, whereas miR-24-3p and miR-20 were reduced. Ingenuity pathway analysis revealed that these miRNAs regulate pathways that promote inflammatory macrophage activation, and predicted that let-7a-5p/let-7b, miR-24-3p, miR-21-5p, miR-17, and miR-181a-5p are key upstream regulators of inflammatory proteins. After ozone exposure, miR-199a-3p, but not precursor miR-199a-3p, was increased in lung macrophages, indicating that it is derived from MV-mediated delivery. Furthermore, lung macrophage mRNA expression of IL-1β was upregulated after administration of MVs containing miR-199a-3p mimic but downregulated by miR-199a-3p inhibitor. Collectively, these data suggest that MVs generated following ozone exposure contribute to proinflammatory macrophage activation via MV-derived miRNAs including miR-199a-3p. These findings identify a novel pathway regulating macrophage inflammatory responses to inhaled ozone.
Insights
Ozone exposure increases extracellular vesicles (EVs), specifically microvesicles (MVs), from myeloid cells. These MVs deliver microRNAs (miRNAs) that activate macrophages, driving lung inflammation and damage from air pollution.
Area of Science:
- Environmental Health
- Cell Biology
- Molecular Biology
Background:
- Ozone is a harmful air pollutant causing lung damage.
- Proinflammatory macrophages are implicated in ozone-induced lung toxicity.
- Extracellular vesicles (EVs) and their microRNA (miRNA) cargo are increasingly recognized as mediators of cellular communication.
Purpose of the Study:
- To investigate the role of EVs, particularly microvesicles (MVs), and their miRNA cargo in ozone-induced macrophage activation.
- To identify specific miRNAs delivered by MVs that contribute to lung inflammation following ozone exposure.
Main Methods:
- Mice were exposed to ozone (0.8 ppm, 3 h).
- Bronchoalveolar lavage fluid (BALF) was collected to isolate EVs and analyze their characteristics (NanoFACS) and miRNA profiles.
- Macrophages were treated with MVs, and inflammatory gene expression was assessed via mRNA analysis.
- miRNA mimic and inhibitor experiments were conducted to confirm the role of specific miRNAs.
Main Results:
- Ozone exposure increased the number of EVs, predominantly MVs, in mouse BALF.
- MVs from ozone-exposed mice upregulated inflammatory gene expression (iNOS, CXCL-1, CXCL-2, IL-1β) in recipient macrophages.
- Ozone-altered MV miRNA profiles showed increased pro-inflammatory miRNAs (e.g., miR-155, miR-199a-3p) and decreased others.
- miR-199a-3p delivered via MVs was shown to directly upregulate IL-1β expression in macrophages.
Conclusions:
- Microvesicles (MVs) released after ozone exposure mediate proinflammatory macrophage activation.
- MV-derived miRNAs, such as miR-199a-3p, are key players in this ozone-induced inflammatory response.
- This study identifies a novel mechanism of intercellular communication contributing to air pollution-induced lung injury.

