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Results 1 to 25 of 381

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PTEN regulation by the Akt/GSK-3β axis during RANKL signalingHYUN DUK JANG; JI YEON NOH; JI HYE SHIN et al.Bone (New York, NY). 2013, Vol 55, Num 1, pp 126-131, issn 8756-3282, 6 p.Article

The inhibitory effect of bisphosphonates on glucocorticoid-induced RANKL expression in human cellsKOBAYASHI, A; HIRANO, F; MAKINO, I et al.Scandinavian journal of rheumatology. 2005, Vol 34, Num 6, pp 480-484, issn 0300-9742, 5 p.Article

MKP-1 signaling events are required for early osteoclastogenesis in lineage defined progenitor populations by disrupting RANKL-induced NFATc1 nuclear translocationVALERIO, Michael S; HERBERT, Bethany A; GRIFFIN, Alfred C et al.Bone (New York, NY). 2014, Vol 60, pp 16-25, issn 8756-3282, 10 p.Article

OPG/membranous-RANKL complex is internalized via the clathrin pathway before a lysosomal and a proteasomal degradationTAT, Steeve Kwan; PADRINES, Marc; THEOLEYRE, Sandrine et al.Bone (New York, NY). 2006, Vol 39, Num 4, pp 706-715, issn 8756-3282, 10 p.Article

Mechanical vibration inhibits osteoclast formation by reducing DC-STAMP receptor expression in osteoclast precursor cellsKULKARNI, Rishikesh N; VOGLEWEDE, Philip A; DAWEI LIU et al.Bone (New York, NY). 2013, Vol 57, Num 2, pp 493-498, issn 8756-3282, 6 p.Article

The generation of osteoclasts from RAW 264.7 precursors in defined, serum-free conditionsVINCENT, Cristina; KOGAWA, Masakazu; FINDLAY, David M et al.Journal of bone and mineral metabolism (English ed.). 2009, Vol 27, Num 1, pp 114-119, issn 0914-8779, 6 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

Effects of PTH on osteocyte functionBELLIDO, Teresita; SAINI, Vaibhav; DIVIETI PAJEVIC, Paola et al.Bone (New York, NY). 2013, Vol 54, Num 2, pp 250-257, issn 8756-3282, 8 p.Article

Histamine Contributes to Increased RANKL to Osteoprotegerin Ratio Through Altered Nuclear Receptor 4A Activity in Human ChondrocytesMARZAIOLI, Viviana; MCMORROW, Jason P; MCEVOY, Alice N et al.Arthritis and rheumatism. 2012, Vol 64, Num 10, pp 3290-3301, issn 0004-3591, 12 p.Article

Osteoclasts and the immune systemNAKASHIMA, Tomoki; TAKAYANAGI, Hiroshi.Journal of bone and mineral metabolism (English ed.). 2009, Vol 27, Num 5, pp 519-529, issn 0914-8779, 11 p.Article

Osteocyte control of osteoclastogenesisO'BRIEN, Charles A; NAKASHIMA, Tomoki; TAKAYANAGI, Hiroshi et al.Bone (New York, NY). 2013, Vol 54, Num 2, pp 258-263, issn 8756-3282, 6 p.Article

Osteocyte apoptosisJILKA, Robert L; NOBLE, Brendon; WEINSTEIN, Robert S et al.Bone (New York, NY). 2013, Vol 54, Num 2, pp 264-271, issn 8756-3282, 8 p.Article

Relationship between serum RANKL and RANKL in boneFINDLAY, D. M; ATKINS, G. J.Osteoporosis international. 2011, Vol 22, Num 10, pp 2597-2602, issn 0937-941X, 6 p.Article

The Transcription Factor FBI-1/OCZF/LRF Is Expressed in Osteoclasts and Regulates RANKL-Induced Osteoclast Formation In Vitro and In VivoKUKITA, Akiko; KUKITA, Toshio; NAGATA, Kengo et al.Arthritis and rheumatism. 2011, Vol 63, Num 9, pp 2744-2754, issn 0004-3591, 11 p.Article

Interleukin-27 Inhibits Human Osteoclastogenesis by Abrogating RANKL-Mediated Induction of Nuclear Factor of Activated T Cells c1 and Suppressing Proximal RANK SignalingKALLIOLIAS, George D; BAOHONG ZHAO; TRIANTAFYLLOPOULOU, Antigoni et al.Arthritis and rheumatism. 2010, Vol 62, Num 2, pp 402-413, issn 0004-3591, 12 p.Article

A Novel T Cell Cytokine, Secreted Osteoclastogenic Factor of Activated T Cells, Induces Osteoclast Formation in a RANKL-Independent MannerRIFAS, Leonard; NEALE WEITZMANN, M.Arthritis and rheumatism. 2009, Vol 60, Num 11, pp 3324-3335, issn 0004-3591, 12 p.Article

High D(+)glucose concentration inhibits RANKL-induced osteoclastogenesisWITTRANT, Y; GORIN, Y; WOODRUFF, K et al.Bone (New York, NY). 2008, Vol 42, Num 6, pp 1122-1130, issn 8756-3282, 9 p.Article

Reciprocal Cross-Talk Between RANKL and Interferon-γ-Inducible Protein 10 Is Responsible for Bone-Erosive Experimental ArthritisHAN BOK KWAK; HA, Hyunil; ZANG HEE LEE et al.Arthritis and rheumatism. 2008, Vol 58, Num 5, issn 0004-3591, 1332-1342 [11 p.]Article

Neue pathophysiologische Stoffwechselwege in der Osteoporose : Zukünftige innovative Therapieansätze? : Neues aus der Osteologie = New pathophysological relevant metabolic pathways in osteoporosis. Future innovative therapies?NEUMANN, E.Zeitschrift für Rheumatologie (Print). 2006, Vol 65, Num 5, issn 0340-1855, 400-406 [6 p.]Article

Incorporation of RANKL promotes osteoclast formation and osteoclast activity on β-TCP ceramicsCHOY, John; ALBERS, Christoph E; SIEBENROCK, Klaus A et al.Bone (New York, NY). 2014, Vol 69, pp 80-88, issn 8756-3282, 9 p.Article

High glucose concentrations alter the biomineralization process in human osteoblastic cellGARCIA-HERNANDEZ, A; ARZATE, H; GIL-CHAVARRIA, I et al.Bone (New York, NY). 2012, Vol 50, Num 1, pp 276-288, issn 8756-3282, 13 p.Article

Effects of 17β-estradiol on adiponectin regulation of the expression of osteoprotegerin and receptor activator of nuclear factor-κB ligandWANG, Qing-Ping; LI YANG; LI, Xian-Ping et al.Bone (New York, NY). 2012, Vol 51, Num 3, pp 515-523, issn 8756-3282, 9 p.Article

AMP kinase acts as a negative regulator of RANKL in the differentiation of osteoclastsLEE, Young-Sun; KIM, Yang-Soon; LEE, Sun-Young et al.Bone (New York, NY). 2010, Vol 47, Num 5, pp 926-937, issn 8756-3282, 12 p.Article

RANKL and OPG activity is regulated by injury size in networks of osteocyte-like cellsMULCAHY, Lauren E; TAYLOR, David; CLIVE LEE, T et al.Bone (New York, NY). 2011, Vol 48, Num 2, pp 182-188, issn 8756-3282, 7 p.Article

The RANK-RANKL-OPG system as a primary regulatory pathway for bone resorptionHOFBAUER, Lorenz C; RUSSELL, R. Graham G.Bone (New York, NY). 2011, Vol 48, issn 8756-3282, S7-S11, SUP1Article

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