scholarly article | Q13442814 |
P2093 | author name string | Ayami Kondo | |
Hideyuki Yamaguchi | |||
Kazuhiko Nakata | |||
Makio Mogi | |||
Naoko Hase | |||
Nobuaki Ozeki | |||
Rie Kawai | |||
Taiki Hiyama | |||
P2860 | cites work | Opposing roles of WNT-5A and WNT-11 in interleukin-1beta regulation of type II collagen expression in articular chondrocytes | Q48086960 |
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Microarray analysis of differential gene expression in temporomandibular joint condylar cartilage after experimentally induced osteoarthritis. | Q54662876 | ||
Role of Wnt-5A in interleukin-1beta-induced matrix metalloproteinase expression in rabbit temporomandibular joint condylar chondrocytes. | Q54723914 | ||
Expression of MMP-8 and MMP-13 in the development of periradicular lesions | Q83742330 | ||
Missense polymorphisms of the WNT16 gene are associated with bone mass, hip geometry and fractures | Q86144181 | ||
WNT16 influences bone mineral density, cortical bone thickness, bone strength, and osteoporotic fracture risk | Q21090209 | ||
Effect of Wnt6 on human dental papilla cells in vitro | Q24297881 | ||
Molecular cloning and expression of collagenase-3, a novel human matrix metalloproteinase produced by breast carcinomas | Q28116247 | ||
The receptor tyrosine kinase Ror2 is involved in non-canonical Wnt5a/JNK signalling pathway | Q28184356 | ||
Wnt-7a causes loss of differentiated phenotype and inhibits apoptosis of articular chondrocytes via different mechanisms | Q28256279 | ||
Ror2 receptor requires tyrosine kinase activity to mediate Wnt5A signaling | Q28257009 | ||
Tumor cell interactions with the extracellular matrix during invasion and metastasis | Q28258256 | ||
Regulation of osteoblastogenesis and bone mass by Wnt10b | Q28509048 | ||
Wnt5a regulates distinct signalling pathways by binding to Frizzled2 | Q28588878 | ||
Cbfa1-independent decrease in osteoblast proliferation, osteopenia, and persistent embryonic eye vascularization in mice deficient in Lrp5, a Wnt coreceptor | Q28590950 | ||
Wnt signaling: a common theme in animal development | Q29547527 | ||
Matrix metalloproteinase expression in teeth with apical periodontitis is differentially modulated by the modality of root canal treatment. | Q33637445 | ||
Inhibitory Effects of Insulin-like Growth Factor-1 and Osteogenic Protein-1 on Fibronectin Fragment- and Interleukin-1β-stimulated Matrix Metalloproteinase-13 Expression in Human Chondrocytes | Q33953821 | ||
Genome-wide meta-analysis identifies 56 bone mineral density loci and reveals 14 loci associated with risk of fracture | Q34268288 | ||
Wnt 5a signaling is critical for macrophage-induced invasion of breast cancer cell lines | Q34600262 | ||
The inductive role of Wnt-β-Catenin signaling in the formation of oral apparatus | Q35089503 | ||
Osteoblast-derived WNT16 represses osteoclastogenesis and prevents cortical bone fragility fractures | Q35360217 | ||
Increased soluble CD4 in serum of rheumatoid arthritis patients is generated by matrix metalloproteinase (MMP)-like proteinases | Q36863620 | ||
Meta-analysis of genome-wide studies identifies WNT16 and ESR1 SNPs associated with bone mineral density in premenopausal women | Q36950799 | ||
Tumor formation due to abnormalities in the beta-catenin-independent pathway of Wnt signaling | Q37083736 | ||
A role for matrix metalloproteinases in regulating mammary stem cell function via the Wnt signaling pathway | Q37161227 | ||
Selective activation mechanisms of Wnt signaling pathways | Q37390097 | ||
alpha7 integrin expressing human fetal myogenic progenitors have stem cell-like properties and are capable of osteogenic differentiation | Q37397373 | ||
Integration of BMP, Wnt, and notch signaling pathways in osteoblast differentiation. | Q37906474 | ||
Roles of Wnt signals in bone resorption during physiological and pathological states. | Q38056632 | ||
IL-1β-induced matrix metalloproteinase-13 is activated by a disintegrin and metalloprotease-28-regulated proliferation of human osteoblast-like cells | Q38308473 | ||
Wnt proteins prevent apoptosis of both uncommitted osteoblast progenitors and differentiated osteoblasts by beta-catenin-dependent and -independent signaling cascades involving Src/ERK and phosphatidylinositol 3-kinase/AKT. | Q38319485 | ||
Downregulation of ErbB3 by Wnt3a contributes to wnt-induced osteoblast differentiation in mesenchymal cells | Q39406865 | ||
Activation of caspases is required for osteoblastic differentiation | Q40637927 | ||
Differential expression of the Fas-Fas ligand system on cytokine-induced apoptotic cell death in mouse osteoblastic cells | Q40707209 | ||
Wnt11 expression in rat dental pulp and promotional effects of Wnt signaling on odontoblast differentiation | Q42272633 | ||
A Wnt/β-catenin negative feedback loop inhibits interleukin-1-induced matrix metalloproteinase expression in human articular chondrocytes | Q42502015 | ||
Dkk2 has a role in terminal osteoblast differentiation and mineralized matrix formation | Q46283325 | ||
P275 | copyright license | Creative Commons Attribution 4.0 International | Q20007257 |
P6216 | copyright status | copyrighted | Q50423863 |
P433 | issue | 2 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 221 | |
P577 | publication date | 2016-02-06 | |
P1433 | published in | International Journal of Molecular Sciences | Q3153277 |
P1476 | title | Wnt16 Signaling Is Required for IL-1β-Induced Matrix Metalloproteinase-13-Regulated Proliferation of Human Stem Cell-Derived Osteoblastic Cells | |
P478 | volume | 17 |
Q41914690 | Bone morphogenetic protein-induced cell differentiation involves Atg7 and Wnt16 sequentially in human stem cell-derived osteoblastic cells |
Q41913466 | MicroRNA-211 and autophagy-related gene 14 signaling regulate osteoblast-like cell differentiation of human induced pluripotent stem cells |
Q57817441 | Use of Laplacian Heat Diffusion Algorithm to Infer Novel Genes With Functions Related to Uveitis |
Q47901236 | Wnt and frizzled expression during regeneration of internal organs in the holothurian Eupentacta fraudatrix |
Q41440456 | Wnt signalling controls the response to mechanical loading during zebrafish joint development. |
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