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Osteoarthritis and Cartilage, ISSN 1063-4584, 2016, Volume 25, Issue 6, pp. 964 - 975
Summary Objective To evaluate the dose–response relationship of exercise loading in the cartilage-subchondral bone (SB) unit in surgically-induced... 
Rheumatology | Cartilage | Exercise | Bone morphogenetic protein | Gremlin-1 | Bone micro-CT | Osteoarthritis | STIMULATION | CHONDROCYTES | RHEUMATOLOGY | INTERLEUKIN-6 | GENTLE TREADMILL WALKING | AFFECT CARTILAGE METABOLISM | ARTICULAR-CARTILAGE | INFLAMMATION | INDUCED ARTHRITIS | DEGRADATION | SUBCHONDRAL BONE | ORTHOPEDICS | Bone Morphogenetic Protein 2 - drug effects | Rats, Wistar | Male | Tibial Meniscus Injuries - metabolism | Bone Morphogenetic Protein 4 - metabolism | Chondrocytes - drug effects | Inhibitor of Differentiation Protein 1 | Bone Morphogenetic Proteins - metabolism | Cartilage, Articular - metabolism | Smad5 Protein - metabolism | Bone Morphogenetic Protein 2 - metabolism | Bone Morphogenetic Protein 6 - drug effects | Bone Morphogenetic Proteins - drug effects | Chondrocytes - metabolism | Physical Conditioning, Animal | Bone Morphogenetic Protein Receptors, Type II - drug effects | Knee Joint - metabolism | Bone Morphogenetic Protein 4 - drug effects | Knee Joint - drug effects | Rats | Osteoarthritis, Knee - etiology | Bone Morphogenetic Protein Receptors, Type II - metabolism | Tibial Meniscus Injuries - complications | Smad5 Protein - drug effects | Animals | Bone Morphogenetic Protein 6 - metabolism | Weight-Bearing | Proteins - pharmacology | Cartilage, Articular - drug effects | Osteoarthritis, Knee - metabolism | Physiological aspects | Medical colleges | Bone morphogenetic proteins | Genetic disorders | Protein binding
Journal Article
Nature Medicine, ISSN 1078-8956, 2014, Volume 20, Issue 4, pp. 408 - 414
Journal Article
European Journal of Pharmacology, ISSN 0014-2999, 2008, Volume 579, Issue 1, pp. 40 - 49
Osteoporosis is a reduction in skeletal mass due to an imbalance between bone resorption and bone formation. Bone morphogenetic protein (BMP) plays important... 
Bone morphogenetic protein | p38 | Osteoblasts | Coumarin | ERK | OSTHOLE | ACTIVATION | coumarin | KINASE | ANGELICA-PUBESCENS | RECEPTOR | FIBRILLOGENESIS | bone morphogenetic protein | IN-VITRO | RAT OSTEOBLASTS | PHARMACOLOGY & PHARMACY | osteoblasts | GROWTH-FACTOR | CELL-DIFFERENTIATION | Phosphorylation | Extracellular Signal-Regulated MAP Kinases - drug effects | Alkaline Phosphatase - metabolism | Male | Extracellular Signal-Regulated MAP Kinases - metabolism | RNA, Messenger - metabolism | Smad Proteins, Receptor-Regulated - drug effects | Bone Morphogenetic Proteins - metabolism | Transforming Growth Factor beta - drug effects | Bone Morphogenetic Proteins - drug effects | Tibia - metabolism | p38 Mitogen-Activated Protein Kinases - metabolism | RNA, Messenger - drug effects | Collagen Type I - metabolism | Furocoumarins - pharmacology | Bone Morphogenetic Protein 2 | Osteoblasts - drug effects | Osteogenesis - drug effects | Cells, Cultured | Rats | Smad Proteins, Receptor-Regulated - metabolism | Methoxsalen - analogs & derivatives | Reverse Transcriptase Polymerase Chain Reaction | Tibia - drug effects | Rats, Sprague-Dawley | Alkaline Phosphatase - drug effects | p38 Mitogen-Activated Protein Kinases - drug effects | Animals | Methoxsalen - pharmacology | Collagen Type I - drug effects | Osteoblasts - metabolism | Transforming Growth Factor beta - metabolism
Journal Article
Journal Article
Journal of Cell Science, ISSN 0021-9533, 06/2002, Volume 115, Issue 12, pp. 2603 - 2611
The plasma membrane of cells is composed of lateral heterogeneities, patches and microdomains. These membrane microdomains or lipid rafts are enriched in... 
Heat shock proteins | CXCR4 | Lipid rafts | GDF5 | TLR4 | LPS | lipid rafts | HLA CLASS-I | N-TERMINAL KINASE | RESONANCE ENERGY-TRANSFER | CLASS-II MOLECULES | FLUID MOSAIC MODEL | CELL BIOLOGY | SIGNAL-TRANSDUCTION | TOLL-LIKE RECEPTOR-4 | HUMAN LYMPHOBLASTOID-CELLS | heat shock proteins | GPI-ANCHORED PROTEINS | INFLUENZA-VIRUS HEMAGGLUTININ | Toll-Like Receptor 4 | Bone Morphogenetic Proteins - immunology | Humans | Lipopolysaccharides - immunology | Membrane Microdomains - immunology | Growth Differentiation Factor 5 | Signal Transduction - immunology | Toll-Like Receptors | Bacteria - immunology | Lymphocyte Activation - immunology | G(M1) Ganglioside - immunology | HSP90 Heat-Shock Proteins - immunology | Receptors, Cell Surface - drug effects | Bacterial Infections - immunology | HSP70 Heat-Shock Proteins - drug effects | Bone Morphogenetic Proteins - drug effects | Nystatin - pharmacology | Mitogen-Activated Protein Kinases - immunology | Membrane Glycoproteins - immunology | CHO Cells | Drosophila Proteins | Cricetinae | HSP70 Heat-Shock Proteins - immunology | HSP90 Heat-Shock Proteins - drug effects | Lipopolysaccharide Receptors - immunology | Receptors, Cell Surface - immunology | Receptors, CXCR4 - drug effects | Animals | Mitogen-Activated Protein Kinase 8 | Receptors, CXCR4 - immunology | Signal Transduction - drug effects | Lymphocyte Activation - drug effects | Membrane Microdomains - drug effects | Lipopolysaccharides - pharmacology | Membrane Glycoproteins - drug effects
Journal Article
Osteoporosis International, ISSN 0937-941X, 3/2012, Volume 23, Issue 3, pp. 1171 - 1176
Journal Article
Arteriosclerosis, Thrombosis, and Vascular Biology, ISSN 1079-5642, 02/2012, Volume 32, Issue 2, pp. 299 - 307
Journal Article
Journal Article
Journal Article
Journal of Bone and Mineral Research, ISSN 0884-0431, 2001, Volume 16, Issue 6, pp. 1068 - 1076
Journal Article
Journal of Periodontal Research, ISSN 0022-3484, 06/2012, Volume 47, Issue 3, pp. 309 - 319
Silvério KG, Davidson KC, James RG, Adams AM, Foster BL, Nociti FH Jr, Somerman MJ, Moon RT. Wnt/β‐catenin pathway regulates bone morphogenetic protein... 
cementoblast | maturation | bone morphogenetic protein (BMP) | dental follicle cells | Wnt | Dental follicle cells | Bone morphogenetic protein (BMP) | Cementoblast | Maturation | SIGNALING PATHWAYS | OSTEOBLAST DIFFERENTIATION | TOOTH ERUPTION | PROLIFERATION | BETA-CATENIN | IDENTIFICATION | MICROARRAY ANALYSIS | DENTISTRY, ORAL SURGERY & MEDICINE | MINERALIZATION | EXPRESSION | Intercellular Signaling Peptides and Proteins - analysis | Transcription, Genetic - drug effects | Bone Morphogenetic Protein 2 - drug effects | Osteogenesis - physiology | Cell Proliferation | Dental Sac - drug effects | Dental Sac - cytology | T Cell Transcription Factor 1 - analysis | Wnt Signaling Pathway - physiology | Core Binding Factor Alpha 1 Subunit - analysis | Extracellular Matrix Proteins - analysis | Gene Knockdown Techniques | Wnt3A Protein - pharmacology | Alkaline Phosphatase - analysis | Cell Culture Techniques | Cell Differentiation - physiology | Osteocalcin - analysis | Axin Protein - analysis | Cell Line | Lymphoid Enhancer-Binding Factor 1 - analysis | Zinc Fingers | Dental Cementum - physiology | Osteoblasts - drug effects | Osteoblasts - physiology | Hepatocyte Nuclear Factor 1-alpha | Bone Morphogenetic Protein 2 - physiology | beta Catenin - genetics | Animals | Wnt Signaling Pathway - drug effects | Cell Differentiation - drug effects | Sp7 Transcription Factor | Dental Cementum - drug effects | Mice | Transcription Factors - analysis | Osteopontin - analysis | Cell proliferation | Alkaline phosphatase | Cbfa-1 protein | Integration | Osteocalcin | Transcription factors | Bone morphogenetic protein 2 | Wnt protein | Moon | catenin | Tcf protein | Follicles | Nuclear transport | Western blotting | Polymerase chain reaction | Signal transduction | Osteoblastogenesis | Mineralization | Bone morphogenetic proteins
Journal Article
JOURNAL OF SPINAL DISORDERS & TECHNIQUES, ISSN 1536-0652, 10/2004, Volume 17, Issue 5, pp. 423 - 428
Objective: An in vitro experiment study using rat disc cells was carried out to determine the effect of bone morphogenetic protein-2 (BMP-2) on extracellular... 
anulus fibrosus | collagen | PROLIFERATION | HUMAN ARTICULAR CHONDROCYTES | bone morphogenetic protein-2 | CLINICAL NEUROLOGY | CARTILAGE | DEGENERATION | aggrecan | intervertebral disc cells | IN-VITRO | GROWTH | OSTEOGENIC PROTEIN-1 | DIFFERENTIATION | ORTHOPEDICS | EXPRESSION | CHONDROGENESIS | Intervertebral Disc - cytology | Gene Expression - drug effects | Extracellular Matrix - metabolism | Cartilage - drug effects | RNA, Messenger - metabolism | Receptors, Growth Factor - genetics | Bone Morphogenetic Proteins - metabolism | Collagen Type I - genetics | Aggrecans | Gene Expression - physiology | Bone Morphogenetic Proteins - drug effects | Cartilage - cytology | Bone Morphogenetic Protein Receptors, Type I | Bone Morphogenetic Proteins - genetics | Bone Morphogenetic Proteins - pharmacology | Glycosaminoglycans - genetics | RNA, Messenger - drug effects | Transforming Growth Factor beta1 | Bone Morphogenetic Protein 2 | Extracellular Matrix - drug effects | Extracellular Matrix Proteins - genetics | Lectins, C-Type | Cells, Cultured | Protein-Serine-Threonine Kinases - genetics | Rats | Up-Regulation - genetics | Intervertebral Disc - metabolism | Cartilage - metabolism | Regeneration - physiology | Bone Morphogenetic Protein Receptors, Type II | Rats, Sprague-Dawley | Collagen Type II - genetics | Up-Regulation - drug effects | Transforming Growth Factor beta - pharmacology | Regeneration - drug effects | Animals | Transforming Growth Factor beta - genetics | Bone Morphogenetic Protein Receptors | Intervertebral Disc - drug effects | Receptors, Growth Factor - drug effects | Transforming Growth Factor beta - metabolism | Bone Morphogenetic Protein 7 | Proteoglycans - genetics | Receptors, Growth Factor - metabolism | Anulus fibrosus | Bone morphogenetic protein-2 | Aggrecan | Intervertebral disc cells | Collagen
Journal Article
Journal Article