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Nature, ISSN 0028-0836, 04/2011, Volume 472, Issue 7343, pp. 356 - 360
Journal Article
Nature Neuroscience, ISSN 1097-6256, 01/2004, Volume 7, Issue 1, pp. 33 - 40
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 6/2010, Volume 107, Issue 24, pp. 10860 - 10865
Journal Article
Journal Article
Neuron, ISSN 0896-6273, 2003, Volume 39, Issue 3, pp. 453 - 465
The mechanisms generating precise connections between specific thalamic nuclei and cortical areas remain poorly understood. Using axon tracing analysis of... 
NEURAL DEVELOPMENT | MOUSE BARREL CORTEX | REGULATORY GENES | OCULAR DOMINANCE COLUMNS | SOMATOSENSORY CORTEX | INTERMEDIATE TARGET | THALAMIC AXONS | SUBPLATE NEURONS | NEUROSCIENCES | CEREBRAL-CORTEX | CORTICAL CIRCUITS | Neural Pathways - enzymology | Thalamus - metabolism | Ephrin-A4 - biosynthesis | Neural Pathways - physiology | Cerebral Cortex - metabolism | Receptor, EphA4 - genetics | Female | Ephrin-A5 - physiology | Neural Pathways - embryology | Receptor, EphA5 - physiology | Ephrin-A4 - genetics | Ephrin-A5 - biosynthesis | Ephrin-A4 - physiology | Receptor, EphA5 - genetics | Cerebral Cortex - enzymology | Mice, Inbred C57BL | Receptor, EphA4 - physiology | Thalamus - enzymology | Mice, Transgenic | Ephrin-A5 - genetics | Brain Mapping - methods | Receptor, EphA4 - biosynthesis | Thalamus - embryology | Animals | Cerebral Cortex - embryology | Neural Pathways - metabolism | Ligands | Mice | Receptor, EphA5 - biosynthesis | Studies | Brain | Cell culture | Brain research | Rodents | Ephrin-A5/biosynthesis/genetics/physiology | Mice; Transgenic | Medical and Health Sciences | Medicin och hälsovetenskap | Brain Mapping/methods | Ephrin-A4/biosynthesis/genetics/physiology | MEDICINE | Thalamus/embryology/enzymology/metabolism | Cerebral Cortex/embryology/enzymology/metabolism | Neural Pathways/embryology/enzymology/metabolism/physiology | Mice; Inbred C57BL | MEDICIN | Receptor; EphA5/biosynthesis/genetics/physiology | Receptor; EphA4/biosynthesis/genetics/physiology | Research Support; Non-U.S. Gov't
Journal Article
Journal Article
PLoS Biology, ISSN 1544-9173, 2014, Volume 12, Issue 9, p. e1001955
Ephrins and Eph receptors are involved in the establishment of vertebrate tissue boundaries. The complexity of the system is puzzling, however in many... 
LAEVIS EMBRYOS | BOUNDARY FORMATION | BIOCHEMISTRY & MOLECULAR BIOLOGY | BIOLOGY | CONTACT INHIBITION | SYNAPSE FORMATION | CELL-ADHESION | TYROSINE KINASES | BETA-CATENIN | NEURAL CREST | EARLY XENOPUS DEVELOPMENT | A LIGANDS | Notochord - growth & development | Ephrin-B3 - genetics | Receptor, EphA4 - metabolism | Receptor, EphB4 - genetics | Ectoderm - metabolism | Notochord - metabolism | Gene Expression Regulation, Developmental | Receptor, EphA4 - genetics | Xenopus laevis - genetics | Xenopus laevis - growth & development | Recombinant Proteins - metabolism | Ephrin-B1 - genetics | Morphogenesis - genetics | Signal Transduction | Ephrin-B3 - metabolism | Ectoderm - growth & development | Recombinant Proteins - genetics | Receptor, EphB2 - genetics | Receptor, EphB2 - metabolism | Ephrin-B1 - metabolism | Ephrin-B2 - metabolism | Receptor, EphB4 - metabolism | Ephrin-B2 - genetics | Animals | Xenopus laevis - metabolism | Embryo, Nonmammalian | Mesoderm - growth & development | Mesoderm - metabolism | Mice | Cellular Automata and Lattice Gases | Life Sciences | Biological Physics | Adaptation and Self-Organizing Systems | Biochemistry, Molecular Biology | Physics and Society | Nonlinear Sciences | Subcellular Processes | Cellular Biology | Molecular Networks | Physics | Cancer | Studies | Medical research | Vertebrates | Ligands
Journal Article
Journal Article
by Li, M and Zhang, C and Jin, L and Matsuo, K and Yang, Y
Journal of Periodontal Research, ISSN 0022-3484, 10/2017, Volume 52, Issue 5, pp. 913 - 921
ObjectiveEphrinA2-EphA2 and ephrinB2-EphB4 critically engage in bidirectional signalling to modulate alveolar bone remodelling. The present study aimed to... 
ephrin/Eph | lipopolysaccharide | periodontal ligament fibroblasts | CELLS | OSTEOGENESIS | OSTEOCLASTOGENESIS | DENTISTRY, ORAL SURGERY & MEDICINE | DISEASE | MINERALIZATION | OSTEOBLASTS | GENE-EXPRESSION | DEPENDENT UP-REGULATION | DIFFERENTIATION | EPH | Receptor Activator of Nuclear Factor-kappa B | Humans | Receptor, EphA2 - drug effects | Alkaline Phosphatase | Periodontal Ligament - drug effects | RNA, Messenger - metabolism | Osteoblasts | Bone Remodeling - drug effects | Osteoprotegerin | Receptor, EphB4 - genetics | Ephrin-A2 - drug effects | Core Binding Factor Alpha 1 Subunit | Cell Culture Techniques | Child | Osteocalcin | Receptors, Eph Family - genetics | Gene Expression Regulation | Ephrin-B2 - genetics | Ephrins - genetics | Fibroblasts - drug effects | Adolescent | Lipopolysaccharides - pharmacology | Receptor, EphA2 - genetics | Ephrin-B2 - drug effects | Porphyromonas gingivalis - metabolism | Receptors, Eph Family - drug effects | Ephrins - drug effects | Receptor, EphB4 - drug effects | Ephrin-A2 - genetics | Osteogenesis | RNA | Mitogens | Phosphatases | Cbfa-1 protein | Alkaline phosphatase | Bone remodelling | Alveolar bone | Gene expression | Western blotting | Lipopolysaccharides | Osteoclastogenesis | Polymerase chain reaction | Periodontal ligament | Fibroblasts | TRANCE protein | EphA2 protein | Eph | Original | ephrin
Journal Article