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PreviewIssue DateTitleAuthor(s)
2013The paired-box homeodomain transcription factor Pax6 binds to the upstream region of the TRAP gene promoter and suppresses receptor activator of NF-kB ligand (RANKL)-induced Osteoclast differentiationKogawa, M.; Hisatake, K.; Atkins, G.; Findlay, D.; Enoki, Y.; Sato, T.; Gray, P.; Kanesaki-Yatsuka, Y.; Anderson, P.; Wada, S.; Kato, N.; Fukuda, A.; Katayama, S.; Tsujimoto, M.; Yoda, T.; Suda, T.; Okazaki, Y.; Matsumoto, M.
2014Analysis of vitamin D metabolism gene expression in human bone: evidence for autocrine control of bone remodellingOrmsby, R.; Findlay, D.; Kogawa, M.; Anderson, P.; Morris, H.; Atkins, G.; Bikle, D.; Norman, A.; Welsh, J.; 16th Vitamin D Workshop (11 Jun 2013 - 14 Jun 2013 : San Francisco, CA, USA)
2011Vitamin D metabolism within bone cells: Effects on bone structure and strengthAnderson, P.; Atkins, G.; Turner, A.; Kogawa, M.; Findlay, D.; Morris, H.
2010The metabolism of 25-(OH)vitamin D3 by osteoclasts and their precursors regulates the differentiation of osteoclastsKogawa, M.; Anderson, P.; Findlay, D.; Morris, H.; Atkins, G.
2013Modulation of osteoclastic migration by metabolism of 25(OH)-vitamin D₃Kogawa, M.; Findlay, D.; Anderson, P.; Atkins, G.
2013Critical role of p38 MAPK for regeneration of the sciatic nerve following crush injury in vivoKato, N.; Matsumoto, M.; Kogawa, M.; Atkins, G.; Findlay, D.; Fujikawa, T.; Oda, H.; Ogata, M.
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.
2011Sclerostin stimulates osteocyte support of osteoclast activity by a RANKL-dependent pathwayWijenayaka, A.; Kogawa, M.; Lim, H.; Bonewald, L.; Findlay, D.; Atkins, G.; Carvalho, D.P.D.