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Using RNA-interference to Investigate the Innate Immune Response in Mouse Macrophages
Published on: November 3, 2014
Interleukin-4-induced macrophage fusion is prevented by inhibitors of mannose receptor activity
A K McNally1, K M DeFife, J M Anderson
1Institute of Pathology, Case Western Reserve University, Cleveland, Ohio 44106, USA.
Abstract:
A potential role for the macrophage mannose receptor in human monocyte-derived macrophage fusion was explored by testing the effects of previously described inhibitors of its activity on the formation of interleukin-4-induced foreign body giant cells in vitro Giant cell formation was prevented or reduced in the presence of alpha-man-nan and synthetic neoglycoprotein conjugates according to the following pattern of relative inhibition: mannose-bovine serum albumin (BSA) > N-acetylgucosamine-BSA congruent to glucose-BSA. Laminarin (beta-glucan) or galactose-BSA were not inhibitory. Swainsonine and castanospermine, inhibitors of glycoprotein processing that interfere with the arrival of newly synthesized mannose receptors at the cell surface, also attenuated macrophage fusion and the formation of giant cells, whereas another glycosidase inhibitor, deoxymannojirimycin, was without effect. Mannose receptors were confirmed to be specifically up-regulated by interleukin-4 in this culture system and also demonstrated to be present and concentrated at macrophage fusion interfaces. These data suggest that the macrophage mannose receptor may be an essential participant in the mechanism of interleukin-4-induced macrophage fusion and implicate a novel function for this endocytic/phagocytic receptor in mediating foreign body giant cell formation at sites of chronic inflammation.
Insights
The macrophage mannose receptor is crucial for interleukin-4-induced foreign body giant cell formation. Inhibitors of this receptor blocked macrophage fusion, suggesting a novel role in inflammation.
Area of Science:
- Immunology
- Cell Biology
Background:
- Macrophage fusion is critical for foreign body giant cell (FBGC) formation.
- The macrophage mannose receptor (MMR) is an endocytic receptor expressed on macrophages.
Purpose of the Study:
- To investigate the role of the MMR in interleukin-4 (IL-4)-induced macrophage fusion and FBGC formation.
- To determine if MMR activity is essential for the fusion process.
Main Methods:
- In vitro study using human monocyte-derived macrophages.
- Treatment with MMR inhibitors (alpha-mannan, neoglycoproteins) and glycoprotein processing inhibitors (swainsonine, castanospermine).
- Assessment of FBGC formation and MMR expression via IL-4 stimulation.
Main Results:
- MMR inhibitors significantly reduced or prevented IL-4-induced FBGC formation.
- Inhibitors of glycoprotein processing also attenuated macrophage fusion.
- MMR was confirmed to be upregulated by IL-4 and concentrated at fusion interfaces.
Conclusions:
- The macrophage mannose receptor plays an essential role in IL-4-induced macrophage fusion.
- MMR mediates FBGC formation, a process implicated in chronic inflammation.

