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Cells | Free Full-Text | Astrocyte Networks as Therapeutic Targets in  Glaucomatous Neurodegeneration
Cells | Free Full-Text | Astrocyte Networks as Therapeutic Targets in Glaucomatous Neurodegeneration

Frontiers | Connexin-Dependent Neuroglial Networking as a New Therapeutic  Target
Frontiers | Connexin-Dependent Neuroglial Networking as a New Therapeutic Target

Synapse | Neuroscience Journal | Wiley Online Library
Synapse | Neuroscience Journal | Wiley Online Library

Gap-junctional coupling between neurons and astrocytes in primary central  nervous system cultures | PNAS
Gap-junctional coupling between neurons and astrocytes in primary central nervous system cultures | PNAS

PDF] Gap junction proteins and their role in spinal cord injury | Semantic  Scholar
PDF] Gap junction proteins and their role in spinal cord injury | Semantic Scholar

Calcium tsunamis: do astrocytes transmit cell death messages via gap  junctions during ischemia? | Nature Neuroscience
Calcium tsunamis: do astrocytes transmit cell death messages via gap junctions during ischemia? | Nature Neuroscience

On the electrical passivity of astrocyte potassium conductance | Journal of  Neurophysiology
On the electrical passivity of astrocyte potassium conductance | Journal of Neurophysiology

Cells | Free Full-Text | Astrocyte Networks as Therapeutic Targets in  Glaucomatous Neurodegeneration
Cells | Free Full-Text | Astrocyte Networks as Therapeutic Targets in Glaucomatous Neurodegeneration

Astrocytes: Diversity in type and function: Novus Biologicals
Astrocytes: Diversity in type and function: Novus Biologicals

Astrocyte-astrocyte syncytium. Astrocytes are interconnected via gap... |  Download Scientific Diagram
Astrocyte-astrocyte syncytium. Astrocytes are interconnected via gap... | Download Scientific Diagram

Targeting gap junction in epilepsy: Perspectives and challenges -  ScienceDirect
Targeting gap junction in epilepsy: Perspectives and challenges - ScienceDirect

Neuronal gap junctions: making and breaking connections during development  and injury: Trends in Neurosciences
Neuronal gap junctions: making and breaking connections during development and injury: Trends in Neurosciences

Connexin 43 gap junction-mediated astrocytic network reconstruction  attenuates isoflurane-induced cognitive dysfunction in mice | Journal of  Neuroinflammation | Full Text
Connexin 43 gap junction-mediated astrocytic network reconstruction attenuates isoflurane-induced cognitive dysfunction in mice | Journal of Neuroinflammation | Full Text

Biomolecules | Free Full-Text | Astrocytic Connexin43 Channels as Candidate  Targets in Epilepsy Treatment
Biomolecules | Free Full-Text | Astrocytic Connexin43 Channels as Candidate Targets in Epilepsy Treatment

Expression and functions of neuronal gap junctions | Nature Reviews  Neuroscience
Expression and functions of neuronal gap junctions | Nature Reviews Neuroscience

Frontiers | Approaches to Study Gap Junctional Coupling
Frontiers | Approaches to Study Gap Junctional Coupling

Overexpression of Astrocytes-Specific GJA1-20k Enhances the Viability and  Recovery of the Neurons in a Rat Model of Traumatic Brain Injury | ACS  Chemical Neuroscience
Overexpression of Astrocytes-Specific GJA1-20k Enhances the Viability and Recovery of the Neurons in a Rat Model of Traumatic Brain Injury | ACS Chemical Neuroscience

The role of astrocytes in brain metastasis at the interface of circulating  tumour cells and the blood brain barrier
The role of astrocytes in brain metastasis at the interface of circulating tumour cells and the blood brain barrier

Relationship between Th1 cells and astrocytic connexin 43 gap junctions in  multiple sclerosis - Watanabe - 2017 - Clinical and Experimental  Neuroimmunology - Wiley Online Library
Relationship between Th1 cells and astrocytic connexin 43 gap junctions in multiple sclerosis - Watanabe - 2017 - Clinical and Experimental Neuroimmunology - Wiley Online Library

Frontiers | The Multifaceted Role of Astrocyte Connexin 43 in Ischemic  Stroke Through Forming Hemichannels and Gap Junctions
Frontiers | The Multifaceted Role of Astrocyte Connexin 43 in Ischemic Stroke Through Forming Hemichannels and Gap Junctions

Figure 8. | Neuroinflammation Leads to Region-Dependent Alterations in Astrocyte  Gap Junction Communication and Hemichannel Activity | Journal of  Neuroscience
Figure 8. | Neuroinflammation Leads to Region-Dependent Alterations in Astrocyte Gap Junction Communication and Hemichannel Activity | Journal of Neuroscience

Cx43 Hemichannels and Gap Junction Channels in Astrocytes Are Regulated  Oppositely by Proinflammatory Cytokines Released from Activated Microglia |  Journal of Neuroscience
Cx43 Hemichannels and Gap Junction Channels in Astrocytes Are Regulated Oppositely by Proinflammatory Cytokines Released from Activated Microglia | Journal of Neuroscience

Astrocyte responses to nanomaterials: Functional changes, pathological  changes and potential applications - ScienceDirect
Astrocyte responses to nanomaterials: Functional changes, pathological changes and potential applications - ScienceDirect

PDF] Neuron–astrocyte communication and synaptic plasticity | Semantic  Scholar
PDF] Neuron–astrocyte communication and synaptic plasticity | Semantic Scholar

Glial connexin expression and function in the context of Alzheimer's  disease - ScienceDirect
Glial connexin expression and function in the context of Alzheimer's disease - ScienceDirect

Frontiers | Connexin Hemichannels in Astrocytes: Role in CNS Disorders
Frontiers | Connexin Hemichannels in Astrocytes: Role in CNS Disorders