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Results 1-10 of 13 (Search time: 0.001 seconds).
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PreviewIssue DateTitleAuthor(s)
2000Human bone-derived cells support formation of human osteoclasts from arthroplasty-derived cells in vitroNeale, S.; Fujikawa, Y.; Sabokbar, A.; Gundle, R.; Murray, D.; Graves, S.; Howie, D.; Athanasou, N.
2001Regulation of calcitonin receptor by glucocorticoid in human osteoclast-like cells prepared in vitro using receptor activator of nuclear factor-kB ligand and macrophage colony-stimulating factorWada, S.; Yasuda, S.; Nagai, T.; Maeda, T.; Kitahama, S.; Suda, S.; Findlay, D.; Iitaka, M.; Katayama, S.
1997Regulation by calcitonin and glucocorticoids of calcitonin receptor gene expression in mouse osteoclastsWada, S.; Udagawa, N.; Akatsu, T.; Nagata, N.; Martin, T.; Findlay, D.
2005Human trabecular bone-derived osteoblasts support human osteoclast formation in vitro in a defined, serum-free mediumAtkins, G.; Kostakis, P.; Welldon, K.; Vincent, C.; Findlay, D.; Zannettino, A.
2005Molecular profiling of giant cell tumor of bone and the osteoclastic localization of ligand for receptor activator of nuclear factor kBMorgan, T.; Atkins, G.; Trivett, M.; Johnson, S.; Kansara, M.; Schlicht, S.; Slavin, J.; Simmons, P.; Dickinson, I.; Powell, G.; Choong, P.; Holloway, A.; Thomas, D.
1996Physiological Levels of Calcitonin Regulate the Mouse Osteoclast Calcitonin Receptor by a Protein Kinase A-Mediated MechanismWada, S.; Udagawa, N.; Nagata, N.; Martin, T.; Findlay, D.
2005An in vitro osteoclast-forming assay to measure myeloma cell-derived osteoclast-activating factorsZannettino, A.; Farrugia, A.; To, L.; Atkins, G.; Brown, R.; Joy Ho, P.
1999Macrophage colony-stimulating factor and interleukin-6 release by periprosthetic cells stimulates osteoclast formation and bone resorptionNeale, S.; Sabokbar, A.; Howie, D.; Murray, D.; Athanasou, N.
2009Biomimetic hydroxyapatite coating on glass coverslips for the assay of osteoclast activity in vitroWijenayaka, A.; Colby, C.; Atkins, G.; Majewski, P.
2010Osteoclastic metabolism of 25(OH)-vitamin D-3: A potential mechanism for optimization of bone resorptionKogawa, M.; Findlay, D.; Anderson, P.; Ormsby, R.; Vincent, C.; Morris, H.; Atkins, G.