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Development (Cambridge), ISSN 0950-1991, 11/2013, Volume 140, Issue 22, pp. 4510 - 4521
Muller glia function as retinal stem cells in adult zebrafish. In response to loss of retinal neurons, Muller glia partially dedifferentiate, re-express neuroepithelial markers and re-enter the cell cycle... 
Müller glia | N-cadherin | Retinal regeneration | Alcama | Muller glia | STEM-CELLS | DEDIFFERENTIATION | PROLIFERATION | DEVELOPMENTAL BIOLOGY | GOLDFISH RETINA | ADULT ZEBRAFISH | VERTEBRATE RETINA | ROD PHOTORECEPTORS | SIGNALING PATHWAY | NEUROGENESIS | LINEAGE | Cadherins - metabolism | Multipotent Stem Cells - metabolism | Photoreceptor Cells, Vertebrate - drug effects | Ependymoglial Cells - metabolism | Neural Stem Cells - cytology | Neuroepithelial Cells - cytology | Retinal Ganglion Cells - metabolism | Retinal Neurons - cytology | Retinal Ganglion Cells - cytology | Neurogenesis - drug effects | Retinal Neurons - drug effects | Asymmetric Cell Division - drug effects | Ouabain - pharmacology | Biomarkers - metabolism | Cell Dedifferentiation - drug effects | Zebrafish Proteins - metabolism | Neural Stem Cells - drug effects | Photoreceptor Cells, Vertebrate - cytology | Cell Adhesion - drug effects | Ependymoglial Cells - drug effects | Regeneration - drug effects | Animals | Retinal Neurons - metabolism | Models, Biological | Multipotent Stem Cells - cytology | Zebrafish - metabolism | Ependymoglial Cells - cytology | Heterozygote | Neuroepithelial Cells - metabolism | Photoreceptor Cells, Vertebrate - metabolism | Cell Cycle - drug effects | Neural Stem Cells - metabolism | Retinal Ganglion Cells - drug effects | Stem Cells and Regeneration
Journal Article
PloS one, ISSN 1932-6203, 11/2014, Volume 9, Issue 11, pp. e112175 - e112175
Journal Article
Nature (London), ISSN 1476-4687, 2018, Volume 560, Issue 7719, pp. 484 - 488
Journal Article
STEM CELLS Translational Medicine, ISSN 2157-6564, 02/2016, Volume 5, Issue 2, pp. 192 - 205
This study investigated the effect of allogeneic transplantation of feline Müller glia with the ability to differentiate into cells expressing retinal ganglion cell (RGC... 
Retinal degeneration | Retinal ganglion cells | Müller cells | Stem cells | OPTIC-NERVE | STEM-CELLS | NEUROTROPHIC FACTOR | RAT RETINA | MOUSE | EXPERIMENTAL GLAUCOMA | Muller cells | CELL & TISSUE ENGINEERING | IN-VITRO | INNER RETINA | PHOTOPIC NEGATIVE RESPONSE | SCOTOPIC THRESHOLD RESPONSE | Neuroprotection | Humans | Collagen - chemistry | Retinal Degeneration - surgery | Transplantation, Heterologous | Stem Cells - cytology | Transplantation, Homologous | Stem Cell Transplantation | Tissue Scaffolds | Retinal Ganglion Cells - cytology | Vitrectomy | Retinal Degeneration - chemically induced | Disease Models, Animal | Vitreous Body - surgery | Electroretinography | Cats | Retinal Ganglion Cells - physiology | Cell Adhesion | Retinal Ganglion Cells - transplantation | Animals | Retinal Degeneration - therapy | Ependymoglial Cells - cytology | Ependymoglial Cells - transplantation | Stem Cells - physiology | Ependymoglial Cells - physiology | N-Methylaspartate | Primary Cell Culture | Retinal Degeneration - pathology | Glaucoma | Medical research | Data analysis | Optic nerve | Transplants & implants | Property rights | Retina | Transplantation | Cell differentiation | Neuronal-glial interactions | Intellectual property | Cell adhesion | Growth factors | University colleges | Tissue Engineering and Regenerative Medicine
Journal Article
PloS one, ISSN 1932-6203, 01/2012, Volume 7, Issue 1, pp. 290 - 305
...], [5] ultimately causing cell death. As a result activation of the P2X7-R, in particular on immune cells and glia, has been extensively studied as a mediator... 
EXTRACELLULAR ATP | RETINAL GANGLION-CELLS | MULLER GLIAL-CELLS | P2X RECEPTORS | MULTIDISCIPLINARY SCIENCES | RAT RETINA | SPINAL-CORD | VESICULAR NUCLEOTIDE TRANSPORTER | PURINERGIC RECEPTORS | RELEASE | EXPRESSION | Immunohistochemistry | Microglia - metabolism | Retinal Rod Photoreceptor Cells - ultrastructure | Retinal Bipolar Cells - radiation effects | Amacrine Cells - metabolism | RNA Splicing - radiation effects | Microglia - radiation effects | Retinal Rod Photoreceptor Cells - metabolism | Amacrine Cells - radiation effects | RNA, Messenger - metabolism | Retinal Cone Photoreceptor Cells - ultrastructure | Astrocytes - radiation effects | Transport Vesicles - radiation effects | Adenosine Triphosphate - metabolism | Light | RNA Splicing - genetics | Retinal Cone Photoreceptor Cells - pathology | Polymerase Chain Reaction | Signal Transduction - radiation effects | Electroretinography | Retinal Cone Photoreceptor Cells - radiation effects | Retinal Bipolar Cells - metabolism | Retinal Rod Photoreceptor Cells - radiation effects | Mice, Inbred C57BL | RNA, Messenger - genetics | Blotting, Western | Mice, Knockout | Receptors, Purinergic P2X7 - deficiency | Animals | Antibody Specificity - radiation effects | Transport Vesicles - metabolism | Receptors, Purinergic P2X7 - metabolism | Mice | Retinal Cone Photoreceptor Cells - metabolism | Retinal Rod Photoreceptor Cells - pathology | Astrocytes - metabolism | RNA | Nervous system diseases | Neurophysiology | Molecular machines | Brain | Spinal cord | Visual cortex | Retina | Nervous system | mRNA | Horizontal cells | Experiments | Visual perception | Machinery and equipment | Proteins | Signal transduction | Mouse devices | Rodents | Synaptic ribbons | Localization | Polypeptides | Neurodegenerative diseases | Neurons | Neurological diseases | Retinal ganglion cells | Signaling | Amacrine cells | Photoreceptors | Transport buildings, stations and terminals | ATP | Transporter | Synapses | Apoptosis
Journal Article
Stem cells and development, ISSN 1547-3287, 12/2011, Volume 20, Issue 12, pp. 253 - 2064
Journal Article