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DC-STAMP: A Key Regulator in Osteoclast DifferentiationRetinoid X receptors orchestrate osteoclast differentiation and postnatal bone remodeling.Sphingosine 1-phosphate signaling in bone remodeling: multifaceted roles and therapeutic potentialLocal application of osteoprotegerin-chitosan gel in critical-sized defects in a rabbit modelOsteoclasts: more than 'bone eaters'.Chronic kidney disease and the skeleton.Production and Functional Characterization of Murine Osteoclasts Differentiated from ER-Hoxb8-Immortalized Myeloid Progenitor CellsOPG Treatment Prevents Bone Loss During Lactation But Does Not Affect Milk Production or Maternal Calcium Metabolism.CHMP5 controls bone turnover rates by dampening NF-κB activity in osteoclastsThe case for genome-wide association studies of bone acquisition in paediatric and adolescent populationsHuman iPSC-derived osteoblasts and osteoclasts together promote bone regeneration in 3D biomaterials.The Nuclear Receptor AhR Controls Bone Homeostasis by Regulating Osteoclast Differentiation via the RANK/c-Fos Signaling Axis.The reversal phase of the bone-remodeling cycle: cellular prerequisites for coupling resorption and formation.Precoating of biphasic calcium phosphate bone substitute with atelocollagen enhances bone regeneration through stimulation of osteoclast activation and angiogenesis.Osteoblast-osteoclast interactions.Graphene-Based MicroRNA Transfection Blocks Preosteoclast Fusion to Increase Bone Formation and Vascularization.Design of hydrogels to stabilize and enhance bone morphogenetic protein activity by heparin mimetics.Early reversal cells in adult human bone remodeling: osteoblastic nature, catabolic functions and interactions with osteoclasts.Influence of fluoride in poly(d,l-lactide)/apatite composites on bone formation.[Regulation of bone metabolism in osteoporosis : novel drugs for osteoporosis in development].Multifaceted Roles for Macrophages in Prostate Cancer Skeletal Metastasis.Loss of murine Gfi1 causes neutropenia and induces osteoporosis depending on the pathogen load and systemic inflammation.Cellular and Molecular Mediators of Bone Metastatic Lesions.Combinatorial Surface Roughness Effects on Osteoclastogenesis and OsteogenesisBone Remodeling and the Role of TRAF3 in Osteoclastic Bone ResorptionCibler l’activité de l’ostéoclaste
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P2860
description
article científic
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article scientifique
@fr
articolo scientifico
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artigo científico
@pt
bilimsel makale
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scientific article published on 04 December 2013
@en
vedecký článok
@sk
vetenskaplig artikel
@sv
videnskabelig artikel
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vědecký článek
@cs
name
Mechanisms of osteoclast-dependent bone formation.
@en
Mechanisms of osteoclast-dependent bone formation.
@nl
type
label
Mechanisms of osteoclast-dependent bone formation.
@en
Mechanisms of osteoclast-dependent bone formation.
@nl
prefLabel
Mechanisms of osteoclast-dependent bone formation.
@en
Mechanisms of osteoclast-dependent bone formation.
@nl
P2860
P356
P1433
P1476
Mechanisms of osteoclast-dependent bone formation.
@en
P2093
P2860
P2888
P356
10.1038/BONEKEY.2013.183
P577
2013-12-04T00:00:00Z