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Inhibitory effect of luteolin on osteoclast differentiation and functionLEE, Ji-Won; AHN, Jae-Yong; HASEGAWA, Shin-Ichi et al.Cytotechnology (Dordrecht). 2009, Vol 61, Num 3, pp 125-134, issn 0920-9069, 10 p.Article

Osteoclast formation and bone resorption are inhibited by megakaryocytesBEETON, C. A; BORD, S; IRELAND, D et al.Bone (New York, NY). 2006, Vol 39, Num 5, pp 985-990, issn 8756-3282, 6 p.Article

Lineage-Committed Osteoclast Precursors Circulate in Blood and Settle Down Into BoneMUTO, Akinori; MIZOGUCHI, Toshihide; PENNINGER, Josef M et al.Journal of bone and mineral research (Print). 2011, Vol 26, Num 12, pp 2978-2990, issn 0884-0431, 13 p.Article

Relating osteon diameter to strainVAN OERS, René F. M; RUIMERMAN, Ronald; VAN RIETBERGEN, Bert et al.Bone (New York, NY). 2008, Vol 43, Num 3, pp 476-482, issn 8756-3282, 7 p.Article

Urinary γ -glutamyltransferase (GGT) as a potential marker of bone resorptionASABA, Yutaro; HIRAMATSU, Kiyoshi; IKEDA, Kyoji et al.Bone (New York, NY). 2006, Vol 39, Num 6, pp 1276-1282, issn 8756-3282, 7 p.Article

CTLA-4 directly inhibits osteoclast formationAXMANN, R; HERMAN, S; ZAISS, M et al.Annals of the rheumatic diseases. 2008, Vol 67, Num 11, pp 1603-1609, issn 0003-4967, 7 p.Article

Isolated osteoclasts resorb the organic and inorganic components of boneBLAIR, H. C; KAHN, A. J; CROUCH, E. C et al.The Journal of cell biology. 1986, Vol 102, Num 4, pp 1164-1172, issn 0021-9525Article

MicroRNA-124 regulates osteoclast differentiationYOUNGKYUN LEE; HYO JEONG KIM; CHEOL KYU PARK et al.Bone (New York, NY). 2013, Vol 56, Num 2, pp 383-389, issn 8756-3282, 7 p.Article

NOTCHing the bone: Insights into multi-functionalityENGIN, Feyza; LEE, Brendan.Bone (New York, NY). 2010, Vol 46, Num 2, pp 274-280, issn 8756-3282, 7 p.Article

Electromagnetically controllable osteoclast activityJUNG MIN HONG; KYUNG SHIN KANG; YI, Hee-Gyeong et al.Bone (New York, NY). 2014, Vol 62, pp 99-107, issn 8756-3282, 9 p.Article

Close encounters with an osteoclastBARNES, D. M.Science (Washington, D.C.). 1987, Vol 236, Num 4804, pp 914-916, issn 0036-8075Article

Congenital osteopetrotic mutations as probes of the origin, structure, and function of osteoclastsMARKS, S. C. JR.Clinical orthopaedics and related research. 1984, Num 189, pp 239-263, issn 0009-921XArticle

Phagocytosis of bone collagen by osteoclasts in two cases of pycnodysostosisEVERTS, V; ARONSON, D. C; BEERTSEN, W et al.Calcified tissue international. 1985, Vol 37, Num 1, pp 25-31, issn 0171-967XArticle

When is it an osteoclast?KAYE, M.Journal of clinical pathology. 1984, Vol 37, Num 4, pp 398-400, issn 0021-9746Article

Investigation of bone resorption within a cortical basic multicellular unit using a lattice-based computational modelBUENZLI, Pascal R; JEON, Junhwan; PIVONKA, Peter et al.Bone (New York, NY). 2012, Vol 50, Num 1, pp 378-389, issn 8756-3282, 12 p.Article

Determination of chitinases family during osteoclastogenesisDI ROSA, Michelino; TIBULLO, Daniele; VECCHIO, Michele et al.Bone (New York, NY). 2014, Vol 61, pp 55-63, issn 8756-3282, 9 p.Article

The collection of NFATc1-dependent transcripts in the osteoclast includes numerous genes non-essential to physiologic bone resorptionCHARLES, Julia F; COURY, Fabienne; STORM, Daniel et al.Bone (New York, NY). 2012, Vol 51, Num 5, pp 902-912, issn 8756-3282, 11 p.Article

Osteocytes as mechanosensors in the inhibition of bone resorption due to mechanical loadingLIDAN YOU; TEMIYASATHIT, Sara; LEE, Peling et al.Bone (New York, NY). 2008, Vol 42, Num 1, pp 172-179, issn 8756-3282, 8 p.Article

Suramin interacts with RANK and inhibits RANKL-induced osteoclast differentiationREGMI, Ajit; FUSON, Tina; XUHAO YANG et al.Bone (New York, NY). 2005, Vol 36, Num 2, pp 284-291, issn 8756-3282, 8 p.Article

Improved methods for testing antiresorptive compounds in human osteoclast culturesRISSANEN, Jukka P; YLIPAHKALA, Hannele; FAGERLUND, Katja M et al.Journal of bone and mineral metabolism (English ed.). 2009, Vol 27, Num 1, pp 105-109, issn 0914-8779, 5 p.Article

Bone resorption by isolated chick osteoclasts in culture is stimulated by murine spleen cell supernatant fluids (osteoclast-activating factor) and inhibited by calcitonin and prostaglandin E2DE VERNEJOUL, M.-C; HOROWITZ, M; DEMIGNON, J et al.Journal of bone and mineral research (Print). 1988, Vol 3, Num 1, pp 69-80, issn 0884-0431Article

Involvement of human endogenous retroviral syncytin-1 in human osteoclast fusionSØE, Ken; ANDERSEN, Thomas L; HOBOLT-PEDERSEN, Anne-Sofie et al.Bone (New York, NY). 2011, Vol 48, Num 4, pp 837-846, issn 8756-3282, 10 p.Article

A unified theory for osteonal and hemi-osteonal remodelingVAN OERS, René F. M; RUIMERMAN, Ronald; TANCK, Esther et al.Bone (New York, NY). 2008, Vol 42, Num 2, pp 250-259, issn 8756-3282, 10 p.Article

Membrane-bound carbonic anhydrases in osteoclastsRIIHONEN, Riikka; SUPURAN, Claudiu T; PARKKILA, Seppo et al.Bone (New York, NY). 2007, Vol 40, Num 4, pp 1021-1031, issn 8756-3282, 11 p.Article

LTB4 can directly stimulate human osteoclast formation from PBMC independent of RANKLJUN JIANG; LV, Hou-Shan; LIN, Jian-Hao et al.Artificial cells, blood substitutes, and biotechnology. 2005, Vol 33, Num 4, pp 391-403, 13 p.Article

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