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An Immunohistopathologic Study to Profile the Folate Receptor Beta Macrophage and Vascular Immune Microenvironment in Giant Cell Arteritis
Published on: February 8, 2019
Molecular imaging of folate receptor β-positive macrophages during acute lung inflammation
Wei Han1, Rinat Zaynagetdinov1, Fiona E Yull2
11 Division of Allergy, Pulmonary and Critical Care Medicine, Department of Medicine.
Abstract:
Characterization of markers that identify activated macrophages could advance understanding of inflammatory lung diseases and facilitate development of novel methodologies for monitoring disease activity. We investigated whether folate receptor β (FRβ) expression could be used to identify and quantify activated macrophages in the lungs during acute inflammation induced by Escherichia coli LPS. We found that FRβ expression was markedly increased in lung macrophages at 48 hours after intratracheal LPS. In vivo molecular imaging with a fluorescent probe (cyanine 5 polyethylene glycol folate) showed that the fluorescence signal over the chest peaked at 48 hours after intratracheal LPS and was markedly attenuated after depletion of macrophages. Using flow cytometry, we identified the cells responsible for uptake of cyanine 5-conjugated folate as FRβ(+) interstitial macrophages and pulmonary monocytes, which coexpressed markers associated with an M1 proinflammatory macrophage phenotype. These findings were confirmed using a second model of acute lung inflammation generated by inducible transgenic expression of an NF-κB activator in airway epithelium. Using CC chemokine receptor 2-deficient mice, we found that FRβ(+) macrophage/monocyte recruitment was dependent on the monocyte chemotactic protein-1/CC chemokine receptor 2 pathway. Together, our results demonstrate that folate-based molecular imaging can be used as a noninvasive approach to detect classically activated monocytes/macrophages recruited to the lungs during acute inflammation.
Insights
Folate receptor beta (FRβ) identifies activated macrophages in acute lung inflammation. Folate-based molecular imaging noninvasively detects these inflammatory cells in the lungs.
Area of Science:
- Immunology
- Molecular Imaging
- Pulmonary Medicine
Background:
- Activated macrophages are key in inflammatory lung diseases.
- Identifying and quantifying these cells aids disease monitoring and treatment development.
Purpose of the Study:
- To investigate folate receptor beta (FRβ) as a marker for activated macrophages in acute lung inflammation.
- To assess the utility of folate-based molecular imaging for detecting these cells in vivo.
Main Methods:
- Induced acute lung inflammation using Escherichia coli LPS in mice.
- In vivo molecular imaging with a fluorescent folate probe.
- Flow cytometry to characterize FRβ-expressing cells.
- Utilized CC chemokine receptor 2-deficient mice to study recruitment pathways.
Main Results:
- FRβ expression significantly increased in lung macrophages 48 hours post-LPS.
- Fluorescence signal peaked at 48 hours and was reduced after macrophage depletion.
- FRβ(+) cells were identified as interstitial macrophages and monocytes with an M1 proinflammatory phenotype.
- Recruitment of FRβ(+) cells depended on the monocyte chemotactic protein-1/CC chemokine receptor 2 pathway.
Conclusions:
- Folate receptor beta serves as a reliable marker for activated macrophages in acute lung inflammation.
- Folate-based molecular imaging offers a noninvasive method to detect and quantify these inflammatory cells in the lungs.
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