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Ephrin

  • Epha Receptors and Ephrin-A Ligands Are Upregulated by Monocytic

    Epha Receptors and Ephrin-A Ligands Are Upregulated by Monocytic

  • Engrailed and Fgf8 Act Synergistically to Maintain the Boundary Between Diencephalon and Mesencephalon Scholpp, S., Lohs, C

    Engrailed and Fgf8 Act Synergistically to Maintain the Boundary Between Diencephalon and Mesencephalon Scholpp, S., Lohs, C

  • On the Turning of Xenopus Retinal Axons Induced by Ephrin-A5

    On the Turning of Xenopus Retinal Axons Induced by Ephrin-A5

  • Detection of Pro Angiogenic and Inflammatory Biomarkers in Patients With

    Detection of Pro Angiogenic and Inflammatory Biomarkers in Patients With

  • Inhibition of Metastasis by HEXIM1 Through Effects on Cell Invasion and Angiogenesis

    Inhibition of Metastasis by HEXIM1 Through Effects on Cell Invasion and Angiogenesis

  • FGF8 Signaling Regulates Growth of Midbrain Dopaminergic Axons by Inducing Semaphorin 3F

    FGF8 Signaling Regulates Growth of Midbrain Dopaminergic Axons by Inducing Semaphorin 3F

  • Differential Sulfation Remodelling of Heparan Sulfate by Extracellular 6

    Differential Sulfation Remodelling of Heparan Sulfate by Extracellular 6

  • Migration Dichotomy of Glioblastoma by Interacting with Focal Adhesion Kinase

    Migration Dichotomy of Glioblastoma by Interacting with Focal Adhesion Kinase

  • Epha1 Interacts with Integrin-Linked Kinase and Regulates Cell Morphology and Motility

    Epha1 Interacts with Integrin-Linked Kinase and Regulates Cell Morphology and Motility

  • Regulation of Ephb2 Activation and Cell Repulsion by Feedback Control Of

    Regulation of Ephb2 Activation and Cell Repulsion by Feedback Control Of

  • Neurosurgical Focus Neurosurg Focus 38 (5):E2, 2015

    Neurosurgical Focus Neurosurg Focus 38 (5):E2, 2015

  • Epha/Ephrin a Reverse Signaling Promotes the Migration of Cortical

    Epha/Ephrin a Reverse Signaling Promotes the Migration of Cortical

  • Eph Receptor Signalling: from Catalytic to Non-Catalytic Functions

    Eph Receptor Signalling: from Catalytic to Non-Catalytic Functions

  • Ephrin-B1 Signals Integrin-Mediated Responses 3075

    Ephrin-B1 Signals Integrin-Mediated Responses 3075

  • FGF/FGFR Signaling in Health and Disease

    FGF/FGFR Signaling in Health and Disease

  • Epha Kinase Activation Regulates HGF-Induced Epithelial Branching

    Epha Kinase Activation Regulates HGF-Induced Epithelial Branching

  • Harnessing the Power of Eph/Ephrin Biosemiotics for Theranostic Applications

    Harnessing the Power of Eph/Ephrin Biosemiotics for Theranostic Applications

  • Phosphoproteomics Identifies a Bimodal EPHA2 Receptor Switch That

    Phosphoproteomics Identifies a Bimodal EPHA2 Receptor Switch That

Top View
  • The Ephrin-A1/EPHA2 Signaling Axis Regulates Glutamine Metabolism in HER2-Positive Breast Cancer Victoria M
  • Eph Receptors and Ephrin Ligands: Embryogenesis to Tumorigenesis
  • Fgf8 Requirement in Midbrain Polarisation 2969 at Approximately the Mid-Point of Each Tectum Was Determined (Mean Likely to Be Influenced by Secondary Effects
  • Eph/Ephrin Signaling: Networks
  • Ephrin/Eph Receptor Interaction Facilitates Macrophage Recognition
  • Phosphoproteomics Identifies a Bimodal EPHA2
  • Current Perspectives of the Signaling Pathways Directing Neural Crest Induction
  • Ligand Discrimination by Erbb Receptors: Di€Erential Signaling Through Di€Erential Phosphorylation Site Usage
  • Ephrin-A1/Fc Chimera from Mouse
  • Ephrina5 Acts As a Tumor Suppressor in Glioma by Negative Regulation of Epidermal Growth Factor Receptor
  • Ephrin-A5/Fc Chimera Human (E0528)
  • Ephrin-B2 Controls Pdgfrb Internalization and Signaling
  • Forward Signaling Mediated by Ephrin-B3 Prevents Contralateral Corticospinal Axons from Recrossing the Spinal Cord Midline
  • Heparan Sulfate Regulates Ephrin-A3/Epha Receptor Signaling
  • A Conditional Feedback Loop Regulates Ras Activity Through Epha2
  • Appendix 3 Eph/Ephrin Receptor Crosstalk
  • The Eph /Ephrin Gene Family in the European Amphioxus – an Evo-Devo Approach
  • Eph Receptors and Ephrins in Cancer: Bidirectional Signalling and Beyond


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