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PloS one, ISSN 1932-6203, 2016, Volume 11, Issue 1, pp. e0147198 - e0147198
Background A longstanding goal in regenerative medicine is to reconstitute functional tissus or organs after injury or disease. Attention has focused on the... 
SKELETAL-MUSCLE | SATELLITE CELL NICHE | STEM-CELLS | ADULT MUSCLE | MACROPHAGES | MYOGENESIS | MULTIDISCIPLINARY SCIENCES | ENDOTHELIAL-CELLS | SELF-RENEWAL | PROLIFERATION | TEMPLATE DNA STRANDS | Barium Compounds - toxicity | Chlorides - toxicity | Muscle, Skeletal - injuries | Cytokines - physiology | Necrosis | Muscle Development | Cold Injury - pathology | Muscle, Skeletal - drug effects | Satellite Cells, Skeletal Muscle - physiology | Freezing - adverse effects | Models, Animal | Myoblasts - physiology | Elapid Venoms - toxicity | Macrophages - physiology | Green Fluorescent Proteins - analysis | Vascular Endothelial Growth Factor Receptor-2 - analysis | Mice, Inbred C57BL | Cobra Cardiotoxin Proteins - toxicity | Mice, Transgenic | Muscle, Skeletal - physiology | Regeneration - physiology | Animals | Fibrosis | Stem Cells - physiology | Mice | Muscle, Skeletal - pathology | Neovascularization, Physiologic | Regeneration - immunology | Cold Injury - physiopathology | Cycles | Barium | Animal models | Transplants & implants | Transgenic | Stem cell transplantation | Confocal microscopy | Infections | Confocal | Epidemiology | Regeneration (physiology) | Cell growth | Histopathology | Rodents | Cell cycle | Gangrene | Basal lamina | Injuries | Immune system | Cytokines | Tissue engineering | Organs | Muscles | Blood vessels | Cell division | Inflammation | Skeletal muscle | Barium chloride | Regeneration | Musculoskeletal system | Microscopy | Experimental design | Stem cells | Infiltration | Chemokines | Index Medicus | Green Fluorescent Proteins | Cobra Cardiotoxin Proteins | Macrophages | Cellular Biology | Vascular Endothelial Growth Factor Receptor-2 | Freezing | Stem Cells | Life Sciences | Cold Injury | Barium Compounds | Chlorides | Myoblasts | Elapid Venoms | Muscle, Skeletal | Satellite Cells, Skeletal Muscle
Journal Article
Drug Design, Development and Therapy, ISSN 1177-8881, 11/2015, Volume 9, pp. 6075 - 6081
As tumor angiogenesis is one of the hallmarks of cancer, the inhibition of vascular endothelial growth factor signaling has become an attractive anticancer... 
Apatinib | Angiogenesis | Molecular targeted therapy | Tumor | Vascular endothelial growth factor receptor-2 | CHEMISTRY, MEDICINAL | EFFICACY | apatinib | angiogenesis | MULTICENTER PHASE-II | vascular endothelial growth factor receptor-2 | BREAST-CANCER | IN-VITRO | YN968D1 | PHARMACOKINETICS | GASTRIC-CANCER | tumor | GROWTH-FACTOR RECEPTOR-2 | PHARMACOLOGY & PHARMACY | molecular targeted therapy | MULTIDRUG-RESISTANCE | INHIBITOR | Humans | Neovascularization, Pathologic | Neoplasms - enzymology | Pyridines - pharmacokinetics | Vascular Endothelial Growth Factor Receptor-2 - metabolism | Neoplasms - blood supply | Treatment Outcome | Angiogenesis Inhibitors - pharmacokinetics | Molecular Targeted Therapy | Neoplasms - drug therapy | Vascular Endothelial Growth Factor Receptor-2 - antagonists & inhibitors | Pyridines - adverse effects | Animals | Signal Transduction - drug effects | Angiogenesis Inhibitors - therapeutic use | Molecular Structure | Neoplasms - pathology | Angiogenesis Inhibitors - adverse effects | Pyridines - therapeutic use | Usage | Care and treatment | Enzyme inhibitors | Innovations | Cancer | Phosphorylation | Lung cancer | Clinical trials | Hepatocellular carcinoma | Systematic review | Metastasis | Kinases | Cancer therapies | Stomach cancer | Molecular weight | Cell adhesion & migration | Anticancer properties | Proteins | Cell growth | Vascular endothelial growth factor | Growth factors | Gastric cancer | Medical research | Breast cancer | Pharmacology | Permeability | Vascular endothelial growth factor receptors | Endothelium | Chemotherapy | Antitumor activity | Solid tumors | Pharmacokinetics | Binding sites | Tumors
Journal Article
Journal of Biochemistry, ISSN 0021-924X, 01/2013, Volume 153, Issue 1, pp. 13 - 19
Vascular endothelial growth factors (VEGFs) belong to the platelet-derived growth factor supergene family, and they play central roles in the regulation of... 
VEGFR | hypoxia | preeclampsia | VEGF | tumor angiogenesis | SUPPRESSES TUMOR-GROWTH | CELLS | TYROSINE KINASE | BIOCHEMISTRY & MOLECULAR BIOLOGY | BONE-MARROW | VEGF RECEPTOR-1 | BEVACIZUMAB PLUS IRINOTECAN | NUTRIENT STARVATION | DNA-SYNTHESIS | FLT-1 | IN-VIVO | Neoplasms - metabolism | Vascular Endothelial Growth Factor Receptor-1 - antagonists & inhibitors | Humans | Male | Neoplasm Proteins - antagonists & inhibitors | Vascular Endothelial Growth Factor A - metabolism | Vascular Endothelial Growth Factor A - antagonists & inhibitors | Molecular Targeted Therapy | Neoplasm Proteins - metabolism | Vascular Endothelial Growth Factor A - chemistry | Vascular Endothelial Growth Factor Receptor-2 - antagonists & inhibitors | Angiogenesis Inhibitors - therapeutic use | Female | Pre-Eclampsia - metabolism | Lymphangiogenesis | Angiogenesis Inhibitors - pharmacology | Vascular Endothelial Growth Factor Receptor-2 - metabolism | Neoplasm Proteins - chemistry | Vascular Endothelial Growth Factor Receptor-1 - metabolism | Vascular Endothelial Growth Factor Receptor-1 - chemistry | Neoplasms - drug therapy | Pregnancy | Vascular Endothelial Growth Factor Receptor-2 - chemistry | Animals | Pre-Eclampsia - drug therapy | Signal Transduction - drug effects | Neovascularization, Pathologic - drug therapy | Neovascularization, Pathologic - metabolism | Neovascularization, Physiologic | JB Reviews
Journal Article
Journal of Experimental Medicine, ISSN 0022-1007, 03/2012, Volume 209, Issue 3, pp. 507 - 520
Journal Article
Nature, ISSN 0028-0836, 04/2012, Volume 484, Issue 7392, pp. 110 - 114
Developing tissues and growing tumours produce vascular endothelial growth factors (VEGFs), leading to the activation of the corresponding receptors in... 
TIP CELL-FORMATION | DLL4 | PATHWAYS | ACTIVATION | BEVACIZUMAB | MULTIDISCIPLINARY SCIENCES | GROWTH | MOUSE | LIGAND | INHIBIT | D114 | Human Umbilical Vein Endothelial Cells | Neovascularization, Physiologic - drug effects | Up-Regulation | Vascular Endothelial Growth Factor Receptor-3 - biosynthesis | Receptors, Notch - metabolism | Humans | Male | Intracellular Signaling Peptides and Proteins - metabolism | Vascular Endothelial Growth Factor A - metabolism | Vascular Endothelial Growth Factor Receptor-2 - genetics | Intracellular Signaling Peptides and Proteins - deficiency | Membrane Proteins - deficiency | Receptors, Notch - antagonists & inhibitors | HEK293 Cells | Female | Transcription, Genetic | Membrane Proteins - metabolism | Intracellular Signaling Peptides and Proteins - genetics | Endothelial Cells - metabolism | Membrane Proteins - genetics | Vascular Endothelial Growth Factor Receptor-2 - deficiency | Cells, Cultured | Vascular Endothelial Growth Factor Receptor-2 - metabolism | Vascular Endothelial Growth Factor Receptor-3 - metabolism | Neovascularization, Physiologic - physiology | Animals | Signal Transduction - drug effects | Endothelial Cells - cytology | Models, Biological | Mice | Protein Kinase Inhibitors - pharmacology | Vascular Endothelial Growth Factor Receptor-3 - genetics | Endothelial Cells - drug effects | Cellular control mechanisms | Physiological aspects | Growth factor receptors | Neovascularization | Research | Vascular endothelial growth factor | Endothelium | Angiogenesis | Ligands | Kinases | Rodents
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 2/2010, Volume 107, Issue 6, pp. 2425 - 2430
Vascular endothelial growth factors (VEGFs) regulate blood and lymph vessel formation through activation of three receptor tyrosine kinases, VEGFR-1, -2, and... 
Proteins | Angiogenesis | Receptors | Vascular endothelial growth factors | Endothelial growth factors | Ligands | Dimers | Chimeras | Monomers | Crystal structure | Vascular endothelial growth factor receptor-2 | Lymphangiogenesis | Vascular endothelial growth factor C | ACTIVATION | COMPLEX | FACTOR-C | angiogenesis | CRYSTAL-STRUCTURE | MULTIDISCIPLINARY SCIENCES | ORF-VIRUS | TYROSINE KINASES | vascular endothelial growth factor receptor-2 | VASCULAR-PERMEABILITY | FAMILY-MEMBER | lymphangiogenesis | KINASE DOMAIN RECEPTOR | vascular endothelial growth factor C | Humans | Crystallography, X-Ray | Vascular Endothelial Growth Factor A - metabolism | Vascular Endothelial Growth Factor A - genetics | Recombinant Fusion Proteins - metabolism | Spodoptera | Vascular Endothelial Growth Factor Receptor-2 - genetics | Vascular Endothelial Growth Factor A - chemistry | Vascular Endothelial Growth Factor C - chemistry | Vascular Endothelial Growth Factor Receptor-1 - genetics | Protein Structure, Tertiary | Cell Line | Cell Survival | Models, Molecular | Vascular Endothelial Growth Factor Receptor-2 - metabolism | Vascular Endothelial Growth Factor Receptor-1 - metabolism | Binding Sites - genetics | Recombinant Fusion Proteins - chemistry | Vascular Endothelial Growth Factor Receptor-3 - metabolism | Vascular Endothelial Growth Factor Receptor-1 - chemistry | Vascular Endothelial Growth Factor C - genetics | Vascular Endothelial Growth Factor Receptor-3 - chemistry | Vascular Endothelial Growth Factor Receptor-2 - chemistry | Animals | Hydrogen Bonding | Vascular Endothelial Growth Factor C - metabolism | Protein Binding | Recombinant Fusion Proteins - genetics | Protein Conformation | Kinetics | Mutation | Vascular Endothelial Growth Factor Receptor-3 - genetics | Development and progression | Research | Growth factor receptors | Neovascularization | Properties | Vascular endothelial growth factor | Protein binding | Lymphangioma | Biological Sciences
Journal Article
Molecular Immunology, ISSN 0161-5890, 02/2012, Volume 50, Issue 1-2, pp. 35 - 41