PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
December 10, 2025Journal of Bone and Mineral Metabolism3 citationsOpen Access

DC-STAMP and OC-STAMP cooperatively regulate osteoclast and foreign body giant cell cell–cell fusion

View Full Paper
FHFuka HommaRIRyotaro IwasakiMTMakoto Tateyama

Key Points

  • Enhanced osteogenesis occurs in DC-STAMP and OC-STAMP double knockout mice, supporting their role in cell–cell fusion.
  • Bone morphometric analysis revealed significant bone formation increases in DKO mice compared to controls.
  • Crossing DC-STAMP knockout and OC-STAMP knockout mice generated doubly deficient models for studying fusion processes.
  • Results suggest a critical cooperative function of transmembrane proteins in the formation of foreign body giant cells.

Abstract

Abstract Introduction Osteoclasts and foreign body giant cells (FBGCs) are multi-nuclear cells established by fusion of their mono-nuclear forms. Multi-nucleation via cell–cell fusion is a common characteristic of osteoclasts and FBGCs, and Dendritic Cell-Specific Transmembrane Protein (DC-STAMP) and Osteoclast Stimulatory Transmembrane Protein (OC-STAMP) are both required for the process. Thus, it is thought that DC-STAMP and OC-STAMP interaction likely induces this fusion, but details of these mechanisms are not clear. Materials and methods We crossed DC-STAMP knockout (KO) with OC-STAMP KO mice to obtain DC-STAMP/OC-STAMP doubly deficient (DKO) mice. Osteoclasts and FBGC common progenitors were isolated from wild-type (WT), DC-STAMP KO, OC-STAMP KO or DKO mice. We then set up 4 co-culture systems: (1) WT with DC-STAMP KO cells, (2) WT with OC-STAMP KO cells, (3) WT with DKO cells, and (4) DC-STAMP KO with OC-STAMP KO cells to induce osteoclast or FBGC formation. We evaluated osteoclast and FBGC formation by TRAP and May–Gruenwald Giemsa staining, respectively. Finally, we performed bone morphometric analysis of WT, DC-STAMP KO, OC-STAMP KO, and DKO mice. Results Cell–cell fusion occurs normally in co-cultures of DC KO with WT cells, OC KO with WT cells, and DKO with WT cells in both osteoclast and FBGC-inducing conditions. By contrast, co-cultures of DC-STAMP KO with OC-STAMP KO cells did not show cell–cell fusion. Bone morphometric analysis revealed enhanced bone formation in DKO mice. Conclusion DC-STAMP and OC-STAMP cooperate to promote osteoclast and FBGC cell–cell fusion. DC-STAMP and OC-STAMP doubly deficient mice exhibit increased osteogenesis.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Homma et al. (2025) studied this question.

synapsesocial.com/papers/69401b372d562116f28f7e24https://doi.org/10.1007/s00774-025-01667-y
Ask AI
Helpful
Bookmark
Share
View Full Paper