Induction of Osteogenesis in Mesenchymal Stem Cells by Activated Monocytes/Macrophages Depends on Oncostatin M Signaling

Author:

Guihard Pierre12,Danger Yannic3,Brounais Bénédicte12,David Emmanuelle12,Brion Régis12,Delecrin Joël4,Richards Carl D.5,Chevalier Sylvie3,Rédini Françoise124,Heymann Dominique124,Gascan Hugues3,Blanchard Frédéric12

Affiliation:

1. INSERM, UMR 957, Equipe Labellisée LIGUE 2012, Nantes, France

2. Université de Nantes, Nantes Atlantique Universités, Laboratoire de Physiopathologie de la Résorption Osseuse et Thérapie des Tumeurs Osseuses Primitives, Faculté de Médecine, Nantes, France

3. INSERM, UMR 564, Angers, France

4. University Hospital, Pôle Ostéo-articulaire, Nantes, France

5. McMaster University, Center for Gene Therapeutics, Hamilton, Ontario, Canada

Abstract

Abstract Bone resorption by osteoclasts and bone formation by osteoblasts are tightly coupled processes implicating factors in TNF, bone morphogenetic protein, and Wnt families. In osteoimmunology, macrophages were described as another critical cell population regulating bone formation by osteoblasts but the coupling factors were not identified. Using a high-throughput approach, we identified here Oncostatin M (OSM), a cytokine of the IL-6 family, as a major coupling factor produced by activated circulating CD14+ or bone marrow CD11b+ monocytes/macrophages that induce osteoblast differentiation and matrix mineralization from human mesenchymal stem cells while inhibiting adipogenesis. Upon activation of toll-like receptors (TLRs) by lipopolysaccharide or endogenous ligands, OSM was produced in classically activated inflammatory M1 and not M2 macrophages, through a cyclooxygenase-2 and prostaglandin-E2 regulatory loop. Stimulation of osteogenesis by activated monocytes/macrophages was prevented using neutralizing antibodies or siRNA to OSM, OSM receptor subunits gp130 and OSMR, or to the downstream transcription factor STAT3. The induced osteoblast differentiation program culminated with enhanced expression of CCAAT-enhancer-binding protein δ, Cbfa1, and alkaline phosphatase. Overexpression of OSM in the tibia of mice has led to new bone apposition with no sign of bone resorption. Two other cytokines have also a potent role in bone formation induced by monocytes/macrophages and activation of TLRs: IL-6 and leukemia inhibitory factor. We propose that during bone inflammation, infection, or injury, the IL-6 family signaling network activated by macrophages and TLR ligands stimulates bone formation that is largely uncoupled from bone resorption and is thus an important target for anabolic bone therapies. Disclosure of potential conflicts of interest is found at the end of this article.

Funder

Vector Core of the University Hospital of Nantes

Association Française contre les Myopathies

Inserm and La Ligue Contre le Cancer

Ministère de la Recherche

Division of Bone Diseases

Department of Rehabilitation and Geriatrics

Geneva University Hospital, Geneva, Switzerland

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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