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PreviewIssue DateTitleAuthor(s)
2001The osteoclastogenic molecules RANKL and RANK are associated with periprosthetic osteolysisHaynes, D.; Crotti, T.; Potter, A.; Loric, M.; Atkins, G.; Howie, D.; Findlay, D.
2002Receptor activator NFκB ligand (RANKL) expression in synovial tissue from patients with rheumatoid arthritis, spondyloarthropathy, osteoarthritis, and from normal patients: semiquantitative and quantitative analysisCrotti, T.; Smith, M.; Weedon, H.; Ahern, M.; Findlay, D.; Kraan, M.; Tak, P.; Haynes, D.
2004Factors regulating osteoclast formation in human tissues adjacent to peri-implant bone loss: expression of receptor activator NF[kappa]B, RANK ligand and osteoprotegerinCrotti, T.; Smith, M.; Findlay, D.; Zreiqat, H.; Ahern, M.; Weedon, H.; Hatzinikolous, G.; Capone, M.; Holding, C.; Haynes, D.
2001Osteoprotegerin and receptor activator of nuclear factor kappaB ligand (RANKL) regulate osteoclast formation by cells in the human rheumatoid arthritic jointHaynes, D.; Crotti, T.; Loric, M.; Bain, G.; Atkins, G.; Findlay, D.
1999Bidirectional signaling between stromal and hemopoietic cells regulates interleukin-1 expression during human osteoclast formationHaynes, D.; Atkins, G.; Loric, M.; Crotti, T.; Geary, S.; Findlay, D.
2000Coordinated cytokine expression by stromal and hematopoietic cells during human osteoclast formationAtkins, G.; Haynes, D.; Geary, S.; Loric, M.; Crotti, T.; Findlay, D.
2002Haemopoietic cells influence stromal cell gene expression during human osteoclast developmentAtkins, G.; Haynes, D.; Zannettino, A.; Capone, M.; Crotti, T.; Findlay, D.
2002Periprosthetic osteolysis is associated with wear particles stimulating factors that control osteoclast formationAtkins, G.; Crotti, T.; Loric, M.; Findlay, D.; Howie, D.; Bain, G.; Haynes, D.
2002Osteolysis in bone loss pathologies is associated with similar factors that control osteoclast formation. Asia Pacific Orthopaedic Association.Atkins, G.; Crotti, T.; Loric, M.; Findlay, D.; Smith, M.; Haynes, D.