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The EMBO journal, ISSN 0261-4189, 06/2012, Volume 31, Issue 12, pp. 2714 - 2736
Journal Article
Molecular and cellular biology, ISSN 1098-5549, 2018, Volume 38, Issue 7
Osteocalcin has recently been shown to regulate energy homeostasis through multiple pathways. Adipose tissue is a main organ of energy metabolism, and... 
GPRC6A | UCP1 | WNT/β-catenin | Osteocalcin | WNT/β-catenin pathway | TCF7/TCF1 | WNT/beta-catenin pathway | STABILIZATION | PGC-1-ALPHA | BIOCHEMISTRY & MOLECULAR BIOLOGY | BETA-CATENIN | CELL BIOLOGY | WNT/beta-catenin | WHITE ADIPOSE-TISSUE | OBESITY | PRDM16 | DISEASE | FAT | osteocalcin | BONE | DYSFUNCTION
Journal Article
Oncotarget, ISSN 1949-2553, 2017, Volume 8, Issue 41, pp. 69538 - 69550
TGF-β1-induced epithelial-mesenchymal transition (EMT) has been proved to be associated with metastasis of breast cancer cells. We attempted to detect a novel... 
TGF-β1 | R-SBE | CDH1 | miR-23a | Wnt/β-catenin
Journal Article
Journal Article
American Journal of Clinical Pathology, ISSN 0002-9173, 09/2013, Volume 140, Issue suppl_1, pp. A108 - A108
Journal Article
Journal of bone and mineral research, ISSN 1523-4681, 2019, Volume 34, Issue 5, pp. 964 - 974
ABSTRACT Active cell proliferation and turnover in the growth plate is essential for embryonic and postnatal bone growth. We performed a lineage tracing of... 
GENETIC ANIMAL MODELS | WNT/β‐CATENIN/LRPs | GROWTH PLATE | CHONDROCYTE AND CARTILAGE BIOLOGY | WNT/β-CATENIN/LRPs | Cell proliferation | Neonates | Growth plate | Bone growth | Wnt protein | Chondrogenesis | Perichondrium | Catenin | Embryos | β-catenin | genetic animal models | LRPs | Wnt | Chondrocyte and cartilage biology
Journal Article
Oncotarget, ISSN 1949-2553, 2017, Volume 8, Issue 52, pp. 90579 - 90604
Radiation therapy induces DNA damage and inflammation leading to fibrosis. Fibrosis can occur 4 to 12 months after radiation therapy. This process worsens with... 
Canonical WNT/β-catenin pathway | TGF-β | PPAR γ | Radiation-induced fibrosis | Myofibroblast
Journal Article
Journal of cellular and molecular medicine, ISSN 1582-1838, 2017, Volume 21, Issue 8, pp. 1545 - 1554
Fibrosis in animal models and human diseases is associated with aberrant activation of the Wnt/β‐catenin pathway. Despite extensive research efforts, effective... 
Smad2/3 | myofibroblast proliferation | pulmonary fibrosis | Wnt/β‐catenin | Wnt/β-catenin | MEDICINE, RESEARCH & EXPERIMENTAL | TGF-BETA | MECHANISMS | BETA-CATENIN | PROTEIN CBP | CELL BIOLOGY | EPITHELIAL-MESENCHYMAL TRANSITION | PATHOGENESIS | INHIBITION | PATHWAY | Wnt/beta-catenin | IDIOPATHIC PULMONARY-FIBROSIS | PROMOTE | Cell Proliferation | Cadherins - metabolism | Vimentin - metabolism | Humans | Transforming Growth Factor beta1 - metabolism | Actins - metabolism | Smad3 Protein - metabolism | Wnt Proteins - metabolism | Actins - genetics | Myofibroblasts - metabolism | Smad3 Protein - genetics | Collagen Type I - genetics | Wnt Proteins - genetics | Vimentin - genetics | Smad2 Protein - genetics | Epithelial-Mesenchymal Transition | Cadherins - genetics | Fibroblasts - metabolism | A549 Cells | Cell Line | Myofibroblasts - pathology | Collagen Type I - metabolism | Signal Transduction | Gene Expression Regulation | Smad2 Protein - metabolism | Rats | Transforming Growth Factor beta1 - genetics | Fibroblasts - pathology | Rats, Sprague-Dawley | beta Catenin - metabolism | beta Catenin - genetics | Animals | Fibrosis | Vimentin | Animal models | Collagen (type I) | Wnt protein | Mesenchyme | Pathogenesis | Transforming growth factor-b | Activation | Proteins | β-catenin | Signal transduction | Molecular modelling | Lungs | Smad2 protein | Effectors | Fibroblasts | Extracellular matrix | Autocrine signalling | Aberration | Smad2 | β‐catenin | Wnt | Original
Journal Article
Journal Article
Journal Article