Macrophage fusion induced by IL‐4 alternative activation is a multistage process involving multiple target molecules
Open Access
- 21 December 2006
- journal article
- highlights
- Published by Wiley in European Journal of Immunology
- Vol. 37 (1), 33-42
- https://doi.org/10.1002/eji.200636788
Abstract
Multinucleated giant cells, characteristic of granulomatous infections, originate from fusion of macrophages, however, little is known about the underlying mechanism. Alternative activation of macrophages by exposure to IL-4 and IL-13 induces macrophage homokaryon formation. We have established a new quantitative bifluorescent system to study IL-4-induced fusion of primary murine macrophages in vitro. Using this assay, we could show that macrophage fusion is not mediated by a single molecule, but involves multiple functional components. Although several murine macrophage populations were not competent to form giant cells, indicating that they fail to display the full fusion machinery, these non-fusogenic macrophages could fuse with fusion-competent macrophages in a heterophilic manner. Since IL-4 induced molecules were needed on both fusion partners, we conclude that at least two functionally distinct molecules mediate macrophage homokaryon formation with each present on one fusion partner. In addition, though IL-4 treatment led to induction of a fusogenic status, macrophages could only fuse efficiently when adherent to a permissive substratum. Based on our findings, we conclude that macrophage fusion is a multistage process involving multiple target molecules. The model we describe will allow analysis of the molecular basis of membrane fusion and possible insight into alternative activation of macrophages. See accompanying commentary: http://dx.doi.org/10.1002/eji.200636910Keywords
This publication has 44 references indexed in Scilit:
- TREM2, a DAP12-Associated Receptor, Regulates Osteoclast Differentiation and FunctionJournal of Bone and Mineral Research, 2006
- The intracellular domain of CD44 promotes the fusion of macrophagesBlood, 2006
- Macrophage fusionThe Journal of Experimental Medicine, 2005
- Biostability and macrophage‐mediated foreign body reaction of silicone‐modified polyurethanesJournal of Biomedical Materials Research Part A, 2005
- Surface chemistry mediates adhesive structure, cytoskeletal organization, and fusion of macrophagesJournal of Biomedical Materials Research Part A, 2004
- Alternative activation of macrophagesNature Reviews Immunology, 2003
- Human monocyte/macrophage adhesion, macrophage motility, and IL-4-induced foreign body giant cell formation on silane-modified surfacesin vitroJournal of Biomedical Materials Research, 1998
- Identification and functional characterization of mouse CD29 with a mAbInternational Immunology, 1995
- Biostability of medical elastomers: a reviewBiomaterials, 1984
- MACROPHAGE-MELANOCYTE HETEROKARYONSThe Journal of Experimental Medicine, 1970