DC-STAMP Is an Osteoclast Fusogen Engaged in Periodontal Bone Resorption

Author:

Wisitrasameewong W.123,Kajiya M.4,Movila A.2,Rittling S.2,Ishii T.5,Suzuki M.6,Matsuda S.4,Mazda Y.2,Torruella M.R.2,Azuma M.M.27,Egashira K.28,Freire M.O.2,Sasaki H.2,Wang C.Y.9,Han X.2,Taubman M.A.2,Kawai T.10

Affiliation:

1. Department of Periodontology, Faculty of Dentistry, Chulalongkorn University, Bangkok, Thailand

2. Department of Immunology and Infectious Diseases, The Forsyth Institute, Cambridge, MA, USA

3. Harvard School of Dental Medicine, Boston, MA, USA

4. Hiroshima University Graduate School of Biomedical Sciences, Periodontal Medicine, Hiroshima, Japan

5. Tokyo Dental College, Tokyo, Chiyoda-ku, Japan

6. College of Dentistry, The Ohio State University, Columbus, OH, USA

7. Araçatuba Dental School, Department of Endodontics, UnivEstadual Paulista, Araçatuba, São Paulo, Brazil

8. LION Corporation, Research and Development Headquarters, Odawara, Kanagawa, Japan

9. UCLA, Lab of Molecular Signaling, Division of Oral Biology and Medicine, UCLA, Los Angeles, CA, USA

10. Department of Periodontology, NOVA Southeastern University College of Dental Medicine, Fort Lauderdale, FL, USA

Abstract

Dendritic cell-specific transmembrane protein (DC-STAMP) plays a key role in the induction of osteoclast (OC) cell fusion, as well as DC-mediated immune regulation. While DC-STAMP gene expression is upregulated in the gingival tissue with periodontitis, its pathophysiological roles in periodontitis remain unclear. To evaluate the effects of DC-STAMP in periodontitis, anti-DC-STAMP–monoclonal antibody (mAb) was tested in a mouse model of ligature-induced periodontitis ( n = 6–7/group) where Pasteurella pneumotropica ( Pp)-reactive immune response activated T cells to produce receptor activator of nuclear factor kappa-B ligand (RANKL), which, in turn, promotes the periodontal bone loss via upregulation of osteoclastogenesis. DC-STAMP was expressed on the cell surface of mature multinuclear OCs, as well as immature mononuclear OCs, in primary cultures of RANKL-stimulated bone marrow cells. Anti-DC-STAMP-mAb suppressed the emergence of large, but not small, multinuclear OCs, suggesting that DC-STAMP is engaged in the late stage of cell fusion. Anti-DC-STAMP-mAb also inhibited pit formation caused by RANKL-stimulated bone marrow cells. Attachment of ligature to a second maxillary molar induced DC-STAMP messenger RNA and protein, along with elevated tartrate-resistant acid phosphatase–positive (TRAP+) OCs and alveolar bone loss. As we expected, systemic administration of anti-DC-STAMP-mAb downregulated the ligature-induced alveolar bone loss. Importantly, local injection of anti-DC-STAMP-mAb also suppressed alveolar bone loss and reduced the total number of multinucleated TRAP+ cells in mice that received ligature attachment. Attachment of ligature induced significantly elevated tumor necrosis factor–α, interleukin-1β, and RANKL in the gingival tissue compared with the control site without ligature ( P < 0.05), which was unaffected by local injection with either anti-DC-STAMP-mAb or control-mAb. Neither in vivo anti- Pp IgG antibody nor in vitro anti- Pp T-cell response and resultant production of RANKL was affected by anti-DC-STAMP-mAb. This study illustrated the roles of DC-STAMP in promoting local OC cell fusion without affecting adaptive immune responses to oral bacteria. Therefore, it is plausible that a novel therapeutic regimen targeting DC-STAMP could suppress periodontal bone loss.

Funder

King Ananda Mahidol Scholarship

National Institute of Dental and Craniofacial Research

Fundação de Amparo à Pesquisa do Estado de São Paulo

Publisher

SAGE Publications

Subject

General Dentistry

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