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MARCO mediates silica uptake and toxicity in alveolar macrophages from C57BL/6 mice
Raymond F Hamilton1, Sheetal A Thakur, Jolene K Mayfair
1Department of Biomedical and Pharmaceutical Sciences, Center for Environmental Health Sciences, University of Montana, Missoula, Montana 59812, USA.
Abstract:
Scavenger receptors (SR), on the surface of the macrophage, appear to be responsible for silica uptake and cell death signaling in the macrophage. The purpose of this study was to isolate which SRs (macrophage receptor with collagenous structure (MARCO), CD204, or CD36) were involved using a variety of SR single and double null mice. The findings indicated that MARCO was the critical SR involved in silica uptake and cytotoxicity in the primary alveolar macrophages (AM) from C57BL/6 mice, as there was no particle uptake or cell death in the absence of this SR. The level of MARCO expression on AM changed significantly with the absence of other SR, and silica uptake was proportional to cell surface MARCO expression. In addition, silica uptake and cytotoxicity were completely blocked by an anti-mouse MARCO antibody. Transfection of Chinese hamster ovary cells with human MARCO supported these conclusions, as silica particles bound to and initiated apoptosis in the MARCO-transfected cells. Strain differences with regard to SR distribution were also examined. There was a differential expression of these SR on AM from each strain, with MARCO dominant for C57BL/6, CD36 dominant on BALB/c, and all three SR expressed on 129/SvJ mice. Similar to the results with C57BL/6 AM, MARCO was involved with silica-induced cell death in the 129/SvJ strain. In contrast, BALB/c AM used an unidentified mechanism for silica uptake because the SR antibodies failed to block particle internalization. Taken together, these results indicate MARCO is the primary AM receptor interacting with silica, depending on mouse strain and level of constitutive expression.
Insights
Macrophage receptor with collagenous structure (MARCO) is key for silica uptake and cell death in alveolar macrophages. Its expression level and presence vary by mouse strain, influencing silica interaction.
Area of Science:
- Immunology
- Toxicology
- Cell Biology
Background:
- Scavenger receptors (SR) on macrophages mediate silica uptake and cell death.
- Identifying specific SRs involved in silica interaction is crucial for understanding macrophage response.
Purpose of the Study:
- To determine which scavenger receptors (MARCO, CD204, CD36) are involved in silica uptake and cytotoxicity.
- To investigate the role of MARCO in silica-induced effects on alveolar macrophages (AM).
Main Methods:
- Utilized single and double scavenger receptor knockout mice.
- Analyzed silica uptake and cytotoxicity in primary alveolar macrophages (AM).
- Employed anti-MARCO antibodies and MARCO-transfected cells for functional validation.
Main Results:
- MARCO was identified as the critical SR for silica uptake and cytotoxicity in C57BL/6 mice AM.
- Silica uptake was directly proportional to cell surface MARCO expression.
- MARCO-mediated silica uptake and apoptosis were confirmed in transfected cells.
- Differential SR expression was observed across mouse strains (C57BL/6, BALB/c, 129/SvJ).
- MARCO was involved in silica-induced death in 129/SvJ mice, while BALB/c mice utilized an unidentified mechanism.
Conclusions:
- MARCO is the primary scavenger receptor mediating silica interaction with alveolar macrophages.
- The role of MARCO in silica response is dependent on mouse strain and its expression level.
- Further research is needed to elucidate the silica uptake mechanism in BALB/c mice.
