Critical Role of MARCO in Crystalline Silica–Induced Pulmonary Inflammation
Open Access
- 16 January 2009
- journal article
- research article
- Published by Oxford University Press (OUP) in Toxicological Sciences
- Vol. 108 (2) , 462-471
- https://doi.org/10.1093/toxsci/kfp011
Abstract
Chronic exposure to crystalline silica can lead to the development of silicosis, an irreversible, inflammatory and fibrotic pulmonary disease. Although, previous studies established the macrophage receptor with collagenous structure (MARCO) as an important receptor for binding and uptake of crystalline silica particles in vitro, the role of MARCO in regulating the inflammatory response following silica exposure in vivo remains unknown. Therefore, we determined the role of MARCO in crystalline silica–induced pulmonary pathology using C57Bl/6 wild-type (WT) and MARCO−/− mice. Increased numbers of MARCO+ pulmonary macrophages were observed following crystalline silica, but not phosphate-buffered saline and titanium dioxide (TiO2), instillation in WT mice, highlighting a specific role of MARCO in silica-induced pathology. We hypothesized that MARCO−/− mice will exhibit diminished clearance of silica leading to enhanced pulmonary inflammation and exacerbation of silicosis. Alveolar macrophages isolated from crystalline silica–exposed mice showed diminished particle uptake in vivo as compared with WT mice, indicating abnormalities in clearance mechanisms. Furthermore, MARCO−/− mice exposed to crystalline silica showed enhanced acute inflammation and lung injury marked by increases in early response cytokines and inflammatory cells compared with WT mice. Similarly, histological examination of MARCO−/− lungs at 3 months post–crystalline silica exposure showed increased chronic inflammation compared with WT; however, only a small difference was observed with respect to development of fibrosis as measured by hydroxyproline content. Altogether, these results demonstrate that MARCO is important for clearance of crystalline silica in vivo and that the absence of MARCO results in exacerbations in innate pulmonary immune responses.Keywords
This publication has 40 references indexed in Scilit:
- Differential Binding of Inorganic Particles to MARCOToxicological Sciences, 2008
- Role of Scavenger Receptor A Family in Lung Inflammation from Exposure to Environmental ParticlesJournal of Immunotoxicology, 2008
- Silica binding and toxicity in alveolar macrophagesPublished by Elsevier ,2007
- Antigen-Presenting Cell Population Dynamics during Murine SilicosisAmerican Journal of Respiratory Cell and Molecular Biology, 2007
- Class A scavenger receptors regulate tolerance against apoptotic cells, and autoantibodies against these receptors are predictive of systemic lupusThe Journal of Experimental Medicine, 2007
- Protection against inhaled oxidants through scavenging of oxidized lipids by macrophage receptors MARCO and SR-AI/IIJournal of Clinical Investigation, 2007
- The Sources of Inflammatory Mediators in the Lung after Silica ExposureEnvironmental Health Perspectives, 2004
- Inhalation of High Concentrations of Low Toxicity Dusts in Rats Results in Impaired Pulmonary Clearance Mechanisms and Persistent InflammationToxicology and Applied Pharmacology, 1997
- Pulmonary Macrophages Are Attracted to Inhaled Particles through Complement ActivationExperimental Lung Research, 1988
- Macrophages, Dust, and Pulmonary DiseasesExperimental Lung Research, 1987