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Bioimpacts, ISSN 2228-5660, 12/2018, Volume 8, Issue Suppl 1, pp. S1 - S129
Journal Article
Cell Death and Differentiation, ISSN 1350-9047, 08/2013, Volume 20, Issue 8, pp. 1116 - 1123
Journal Article
PloS one, ISSN 1932-6203, 2012, Volume 7, Issue 1, p. e29597
Human embryonic stem cells (hESC) and induced pluripotent stem cells (iPSC) provide new prospects for studying human neurodevelopment and modeling neurological disease... 
HUMAN ES | INHIBITION | FGF | MULTIDISCIPLINARY SCIENCES | CENTRAL-NERVOUS-SYSTEM | DIFFERENTIATION CAPACITY | PRECURSORS | Oligonucleotide Array Sequence Analysis | Humans | Fibroblast Growth Factor 2 - pharmacology | Neurons - cytology | Gene Expression Profiling | Neural Stem Cells - cytology | Neuroepithelial Cells - cytology | Neuroglia - cytology | Neurons - metabolism | Induced Pluripotent Stem Cells - cytology | Induced Pluripotent Stem Cells - metabolism | Cell Line | Pluripotent Stem Cells - cytology | Transcription Factors - genetics | Reverse Transcriptase Polymerase Chain Reaction | Pluripotent Stem Cells - metabolism | Transcription Factors - metabolism | Cell Differentiation - drug effects | Fluorescent Antibody Technique | Neuroglia - metabolism | Cell Proliferation - drug effects | Neuroepithelial Cells - metabolism | Epidermal Growth Factor - pharmacology | Neural Stem Cells - metabolism | Cluster Analysis | Medical research | Nervous system diseases | Epidermal growth factor | Neurons | Medicine, Experimental | Fibroblast growth factors | Comparative analysis | Embryonic stem cells | Neurophysiology | Neurosciences | Laboratories | Neurobiology | Embryo cells | Radial glial cells | Nervous system | Biochemistry | Neurodevelopmental disorders | Neuronal-glial interactions | Genotype & phenotype | Fibroblasts | Physiology | Growth factors | Fibroblast growth factor 2 | Fetuses | Embryos | Brain research | Stem cells | Comparative studies | Hindbrain | Bayesian analysis | Pluripotency
Journal Article
PLoS ONE, ISSN 1932-6203, 04/2013, Volume 8, Issue 4, p. e59431
.... Spermatogonial stem cells and their progeny belong to the class of undifferentiated spermatogonia, a germ cell population found on the basal membrane of the seminiferous tubules... 
VASP | GERMLINE STEM-CELLS | UNDIFFERENTIATED SPERMATOGONIA | PROTEIN | ACTIN | CHEMOATTRACTANT | MULTIDISCIPLINARY SCIENCES | RECEPTOR | HEPARAN-SULFATE | EXPRESSION | CULTURE | Actin Cytoskeleton - metabolism | Stem Cell Niche | Humans | Mice, Inbred C57BL | Actins - metabolism | Glial Cell Line-Derived Neurotrophic Factor Receptors - metabolism | Rats | Male | Stem Cells - cytology | Phosphoproteins - metabolism | Stem Cells - metabolism | Cell Adhesion Molecules - metabolism | Cell Movement - drug effects | Animals | Actin Cytoskeleton - drug effects | Glial Cell Line-Derived Neurotrophic Factor - pharmacology | Stem Cells - drug effects | Mice | Microfilament Proteins - metabolism | Spermatogonia - cytology | Muscle proteins | Stem cells | Gametes | Cell culture | Boyden chamber | Spermatogenesis | Stem cell transplantation | Biology | Neuronal-glial interactions | Proteins | Embryology | Allografts | Actin | Rodents | Cell adhesion | Glial cell line-derived neurotrophic factor | Tubules | Histology | Mammals | Vasodilator-stimulated phosphoprotein | Biological activity | Progeny | Spermatogonia | Cell lines | Cells (biology) | Cytoskeleton | Ligands | Axon guidance | Cell migration | Actin Cytoskeleton | Cell Adhesion Molecules | Actins | Cellular Biology | Stem Cells | Life Sciences | Glial Cell Line-Derived Neurotrophic Factor Receptors | Microfilament Proteins | Phosphoproteins | Glial Cell Line-Derived Neurotrophic Factor | Cell Movement
Journal Article
PLoS ONE, ISSN 1932-6203, 2011, Volume 6, Issue 3, p. e17540
Background: Neural induction of human pluripotent stem cells often yields heterogeneous cell populations that can hamper quantitative and comparative analyses... 
PROGENITOR CELLS | NERVOUS-SYSTEM | HUMAN ES | MULTIDISCIPLINARY SCIENCES | SPINAL-CORD | SELF-RENEWAL | FLOW-CYTOMETRIC ANALYSIS | DOPAMINERGIC-NEURONS | DIFFERENTIATION | FETAL | HUMAN BLASTOCYSTS | Cell Proliferation | Antibodies - metabolism | Humans | Neurons - cytology | Neural Stem Cells - cytology | Antigens, CD - metabolism | Neuroglia - cytology | Spinal Cord - pathology | Neural Stem Cells - transplantation | Cell Differentiation | Cell Membrane - metabolism | Neurons - metabolism | Biomarkers - metabolism | Pluripotent Stem Cells - cytology | Cell Survival | Cells, Cultured | Rats | Cell Separation - methods | Rats, Sprague-Dawley | Pluripotent Stem Cells - metabolism | Phenotype | Animals | Models, Biological | Neuroglia - metabolism | Mice | Neural Stem Cells - metabolism | Viral antibodies | Antibodies | Comparative analysis | Cell differentiation | Embryonic stem cells | Neurons | Flow cytometry | Neurosciences | Populations | Transplants & implants | Image processing | Laboratories | Embryo cells | Fluorescence | Cell surface | Neuronal-glial interactions | CD44 antigen | Rodents | Paralysis | Signatures | Drug dosages | Astrocytes | Glial fibrillary acidic protein | Embryos | Screens | Medicine | Studies | Brain research | Stem cells | Biomarkers | Neural stem cells | CD18 antigen | Spinal cord injuries | Anesthesiology | Differentiation | Surface markers | Pluripotency | Cell culture | Mixed culture | Action potential | Glia
Journal Article
PLoS biology, ISSN 1545-7885, 2018, Volume 16, Issue 4, p. e2004426
Neural progenitor cells (NPCs), which are apicobasally elongated and densely packed in the developing brain, systematically move their nuclei/somata in a cell cycle-dependent manner, called interkinetic nuclear migration (IKNM... 
ASYMMETRIC INHERITANCE | RADIAL GLIAL-CELLS | EPITHELIUM | MICROTUBULES | BIOCHEMISTRY & MOLECULAR BIOLOGY | TISSUE | BIOLOGY | FLEXURAL RIGIDITY | STEM-CELL | PHYSICAL FORCES | INTERKINETIC NUCLEAR MIGRATION | MYOSIN-II | Cell Nucleus Division - physiology | Embryo, Mammalian | Elasticity | Neural Stem Cells - cytology | Neuroepithelial Cells - cytology | Cerebral Cortex - cytology | Time-Lapse Imaging | Cell Nucleus - physiology | Cell Nucleus Division - drug effects | Heterocyclic Compounds, 4 or More Rings - pharmacology | Movement - physiology | Actomyosin - chemistry | Neural Stem Cells - drug effects | Neural Stem Cells - physiology | Cell Nucleus - ultrastructure | Actomyosin - metabolism | Mice, Inbred ICR | Biomechanical Phenomena | Animals | Cell Cycle - physiology | Neuroepithelial Cells - physiology | Cerebral Cortex - physiology | Cell Proliferation - drug effects | Mice | Energy Transfer | Cell Cycle - drug effects | Cell Nucleus - drug effects | Neuroepithelial Cells - drug effects | Neuroplasticity | Physiological aspects | Observations | Epithelial cells | Brain | Funding | Recoil | Biology | Morphogenesis | Energy | Cell cycle | Supervision | Elongation | University graduates | Actomyosin | Contractility | Cell division | Progenitor cells | Medicine | Brain research | Molecular modelling | Microscopy | Cells (biology) | Data collection | Neural stem cells | Software | Nuclei (cytology) | Energy transfer | Cell migration
Journal Article
Stem cell research, ISSN 1873-5061, 2015, Volume 14, Issue 3, pp. 243 - 257
Stem cell therapies are being explored extensively as treatments for degenerative eye disease, either for replacing lost neurons, restoring neural circuits or, based on more recent evidence... 
NEUROTROPHIC FACTOR | TRANSECTED SPINAL-CORD | OPTIC-NERVE CRUSH | VERSUS-HOST-DISEASE | PROMOTE LOCOMOTOR RECOVERY | CELL & TISSUE ENGINEERING | CELL BIOLOGY | RETINAL GANGLION-CELLS | MESENCHYMAL STROMAL CELLS | HUMAN BONE-MARROW | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | PIGMENT EPITHELIUM | IN-VITRO DIFFERENTIATION | Cell- and Tissue-Based Therapy - methods | Stem Cells - immunology | Retinal Ganglion Cells - physiology | Humans | Induced Pluripotent Stem Cells - transplantation | Dental Pulp - cytology | Stem Cell Transplantation | Retinal Ganglion Cells - cytology | Retina - cytology | Embryonic Stem Cells - transplantation | Neural Stem Cells - transplantation | Graft Rejection | Eye Diseases - pathology | Mesenchymal Stem Cell Transplantation | Regeneration - immunology | Eye Diseases - therapy | GFAP, glial fibrillary acidic protein | EGF, epidermal growth factor | NSCs, neural stem cells | SCI, spinal cord injury | NGF, nerve growth factor | Review | iPSCs, induced pluripotent stem cells | ivit, intravitreal | mTOR, mammalian target of rapamycin | ONL, outer nuclear layer | RGC, retinal ganglion cell | NTFs, neurotrophic factors | VEGF, vascular endothelial growth factor | AMD, age-related macular degeneration | DPSC, dental pulp stem cells | FGF, fibroblast growth factor | NT-3, neurotrophin-3 | CNS, central nervous system | BDNF, brain-derived neurotrophic factor | GDNF, glial cell line-derived neurotrophic factor | ERG, electroretinogram | TBI, traumatic brain injury | RPE, retinal pigment epithelial cells | BMSCs, bone marrow-derived stem cells | CNTF, ciliary neurotrophic factor | MSC, mesenchymal stem cells | ESCs, embryonic stem cells | TrK, tropomyosin related kinase | RCS, Royal College of Surgeons rats | ADSCs, adipose-derived stem cells
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Journal Article
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