Neural Stem Cells

Restoration of Progranulin Expression Rescues Cortical Neuron Generation in an Induced Pluripotent Stem Cell Model of Frontotemporal Dementia

Neurogenesis / Gene expression / Transcriptome / Cell line / Cell Differentiation / Humans / Mutation / Neurons / Haploinsufficiency / Phenotype / Time Factors / Frontotemporal Dementia / Biological markers / Neural Stem Cells / Induced Pluripotent Stem Cells / Gene expression profiling / Humans / Mutation / Neurons / Haploinsufficiency / Phenotype / Time Factors / Frontotemporal Dementia / Biological markers / Neural Stem Cells / Induced Pluripotent Stem Cells / Gene expression profiling

Beta-adrenoceptor pathway enhances mitochondrial function in human neural stem cells via rotary cell culture system

Cognitive Science / Mitochondria / Signal Transduction / Humans / Neural Stem Cells / Neural pathways / Statistical Methods for Neuroscience / Cell Survival / Neurosciences / Neural pathways / Statistical Methods for Neuroscience / Cell Survival / Neurosciences

Restoration of Progranulin Expression Rescues Cortical Neuron Generation in an Induced Pluripotent Stem Cell Model of Frontotemporal Dementia

Neurogenesis / Gene expression / Transcriptome / Cell line / Cell Differentiation / Humans / Mutation / Neurons / Haploinsufficiency / Phenotype / Time Factors / Frontotemporal Dementia / Biological markers / Neural Stem Cells / Induced Pluripotent Stem Cells / Gene expression profiling / Humans / Mutation / Neurons / Haploinsufficiency / Phenotype / Time Factors / Frontotemporal Dementia / Biological markers / Neural Stem Cells / Induced Pluripotent Stem Cells / Gene expression profiling

Tumour vascularization via endothelial differentiation of glioblastoma stem-like cells

Stem Cells / Cancer / Multidisciplinary / Nature / Neural stem cell / Cell Differentiation / Humans / Endothelial Cells / Mice / Glioblastoma / Animals / Vascular endothelium / Cancer Stem Cell / Endothelial cell / In vitro culture / Degeneration / Neural Stem Cells / Vascular Endothelial Growth Factor / Cell Differentiation / Humans / Endothelial Cells / Mice / Glioblastoma / Animals / Vascular endothelium / Cancer Stem Cell / Endothelial cell / In vitro culture / Degeneration / Neural Stem Cells / Vascular Endothelial Growth Factor

Tumour vascularization via endothelial differentiation of glioblastoma stem-like cells

Multidisciplinary / Nature / Neural stem cell / Cell Differentiation / Humans / Endothelial Cells / Mice / Glioblastoma / Animals / Vascular endothelium / Cancer Stem Cell / Endothelial cell / In vitro culture / Degeneration / Neural Stem Cells / Vascular Endothelial Growth Factor / Endothelial Cells / Mice / Glioblastoma / Animals / Vascular endothelium / Cancer Stem Cell / Endothelial cell / In vitro culture / Degeneration / Neural Stem Cells / Vascular Endothelial Growth Factor

Timing of Intra-Arterial Neural Stem Cell Transplantation After Hypoxia-Ischemia Influences Cell Engraftment, Survival, and Differentiation

Stem Cell Transplantation / Cell Differentiation / Stroke / Mice / Animals / Male / Neurons / Astrocytes / Clinical Sciences / Time Factors / Glial Fibrillary Acidic Protein / Neural Stem Cells / Neurosciences / Male / Neurons / Astrocytes / Clinical Sciences / Time Factors / Glial Fibrillary Acidic Protein / Neural Stem Cells / Neurosciences

The Transcriptional Coactivator Querkopf Controls Adult Neurogenesis

Neuroscience / Stem Cells / Adult neurogenesis / Transcription / Cell Differentiation / Mice / Animals / The / Neurons / Chromatin / Histone acetyltransferases / Neuronal Migration / Olfactory Bulb / Neural Stem Cells / Neurosciences / Zinc Finger Protein / Mice / Animals / The / Neurons / Chromatin / Histone acetyltransferases / Neuronal Migration / Olfactory Bulb / Neural Stem Cells / Neurosciences / Zinc Finger Protein

A Novel Protocol to Differentiate Induced Pluripotent Stem Cells by Neuronal microRNAs to Provide a Suitable Cellular Model

Neurodegenerative Diseases / Cell Differentiation / Humans / Plasmids / Neurons / microRNAs / Neural Stem Cells / Induced Pluripotent Stem Cells / Biochemistry and cell biology / microRNAs / Neural Stem Cells / Induced Pluripotent Stem Cells / Biochemistry and cell biology

PLGA artificial nerve conduits with dental pulp cells promote facial nerve regeneration

Biomedical Engineering / Regeneration / Collagen / Animals / Male / Medical Physiology / Tissue engineering and regenerative medicine / Nerve Regeneration / Clinical Sciences / Facial Nerve / Rats / Time Factors / Schwann Cells / Neural Stem Cells / Lactic Acid / Dental Pulp / Medical Physiology / Tissue engineering and regenerative medicine / Nerve Regeneration / Clinical Sciences / Facial Nerve / Rats / Time Factors / Schwann Cells / Neural Stem Cells / Lactic Acid / Dental Pulp

PLGA artificial nerve conduits with dental pulp cells promote facial nerve regeneration

Biomedical Engineering / Regeneration / Collagen / Animals / Male / Medical Physiology / Tissue engineering and regenerative medicine / Nerve Regeneration / Clinical Sciences / Facial Nerve / Rats / Time Factors / Schwann Cells / Neural Stem Cells / Lactic Acid / Dental Pulp / Medical Physiology / Tissue engineering and regenerative medicine / Nerve Regeneration / Clinical Sciences / Facial Nerve / Rats / Time Factors / Schwann Cells / Neural Stem Cells / Lactic Acid / Dental Pulp

Permeability Transition Pore-Mediated Mitochondrial Superoxide Flashes Regulate Cortical Neural Progenitor Differentiation

Immunohistochemistry / Mitochondria / Confocal Microscopy / Multidisciplinary / Cell Differentiation / Cerebral Cortex / Mice / Animals / Cyclosporine / Superoxide Dismutase / PLoS one / Time Factors / Glial Fibrillary Acidic Protein / Tubulin / Neural Stem Cells / Superoxides / Immunoblotting / Mitochondrial Proteins / Cerebral Cortex / Mice / Animals / Cyclosporine / Superoxide Dismutase / PLoS one / Time Factors / Glial Fibrillary Acidic Protein / Tubulin / Neural Stem Cells / Superoxides / Immunoblotting / Mitochondrial Proteins

A Novel Protocol to Differentiate Induced Pluripotent Stem Cells by Neuronal microRNAs to Provide a Suitable Cellular Model

Neurodegenerative Diseases / Cell Differentiation / Humans / Plasmids / Neurons / microRNAs / Neural Stem Cells / Induced Pluripotent Stem Cells / Biochemistry and cell biology / microRNAs / Neural Stem Cells / Induced Pluripotent Stem Cells / Biochemistry and cell biology

PARP Inhibition Restores Extrinsic Apoptotic Sensitivity in Glioblastoma

Drug interactions / Enzyme Inhibitors / Apoptosis / Multidisciplinary / Humans / Mice / Glioblastoma / Animals / PLoS one / Caspase / Neural Stem Cells / Cell Proliferation / Cell Survival / Phthalazines / Cell Membrane / Mice / Glioblastoma / Animals / PLoS one / Caspase / Neural Stem Cells / Cell Proliferation / Cell Survival / Phthalazines / Cell Membrane

PARP Inhibition Restores Extrinsic Apoptotic Sensitivity in Glioblastoma

Drug interactions / Enzyme Inhibitors / Apoptosis / Multidisciplinary / Humans / Mice / Glioblastoma / Animals / PLoS one / Caspase / Neural Stem Cells / Cell Proliferation / Cell Survival / Phthalazines / Cell Membrane / Mice / Glioblastoma / Animals / PLoS one / Caspase / Neural Stem Cells / Cell Proliferation / Cell Survival / Phthalazines / Cell Membrane

A Novel Protocol to Differentiate Induced Pluripotent Stem Cells by Neuronal microRNAs to Provide a Suitable Cellular Model

Neurodegenerative Diseases / Cell Differentiation / Humans / Plasmids / Neurons / microRNAs / Neural Stem Cells / Induced Pluripotent Stem Cells / Biochemistry and cell biology / microRNAs / Neural Stem Cells / Induced Pluripotent Stem Cells / Biochemistry and cell biology
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