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Journal Article
Journal Article
PLoS ONE, ISSN 1932-6203, 02/2015, Volume 10, Issue 2, p. e0118188
Neural stem cells (NSCs) have the ability to proliferate and differentiate into neurons and glia. Regulation of NSC fate by small molecules is important for... 
PROGENITOR CELLS | SH-SY5Y CELLS | CULTIVATED MULBERRY TREE | IN-VITRO | MORUS-ALBA L | MULTIDISCIPLINARY SCIENCES | PRENYLATED FLAVONOIDS | NEURONAL DIFFERENTIATION | CORTEX RADICIS MORACEAE | ROOT BARK | PRECURSOR CELLS | Cell Survival - drug effects | Plant Extracts - pharmacology | RNA, Messenger - genetics | Cells, Cultured | Neural Stem Cells - drug effects | Rats | Down-Regulation - drug effects | Rats, Sprague-Dawley | Up-Regulation - drug effects | Animals | MAP Kinase Signaling System - drug effects | Bromodeoxyuridine - pharmacology | Signal Transduction - drug effects | Cell Differentiation - drug effects | Plant Roots - chemistry | Cyclin-Dependent Kinase Inhibitor p21 - metabolism | Cell Proliferation - drug effects | Flavonoids - pharmacology | MicroRNAs - genetics | Neurogenesis - drug effects | Phosphorylation - drug effects | Morus - chemistry | Cell proliferation | Fibroblast growth factor | Phosphorylation | Nuclear magnetic resonance--NMR | Laboratories | Stem cell transplantation | Drug development | Kinases | Neurogenesis | Neuronal-glial interactions | Regeneration (physiology) | Cyclin-dependent kinase | Epidermal growth factor | Cell fate | Pharmaceutical sciences | Fibroblast growth factor 2 | Cell survival | Neurodegenerative diseases | Neurons | MiRNA | Extracellular signal-regulated kinase | Pharmacology | Gene expression | Survival | Chromatography | Molecular chains | Neurological diseases | Regeneration | Cyclin-dependent kinase inhibitor p21 | Phytochemicals | Brain research | Ribonucleic acids | MicroRNAs | Pharmacy | Stem cells | Neural stem cells | Hypoxia | Differentiation | Mitogens | Apoptosis | Nuclear magnetic resonance | NMR
Journal Article
Molecular Neurobiology, ISSN 0893-7648, 1/2018, Volume 55, Issue 1, pp. 13 - 25
Oxidative stress is a common feature in neurodegenerative diseases associated with neuroinflammation, and therefore, has been proposed as a key target for... 
Neurology | Oxidative stress | Neurosciences | Biomedicine | Neurodegenerative diseases | Conditioned medium | SH-SY5Y cells | Neurobiology | N-acetyl cysteine | Adipose-derived stem cells | Cell Biology | DIFFERENTIATED SH-SY5Y CELLS | ALZHEIMERS-DISEASE | NEUROSCIENCES | IN-VITRO | RETINOIC ACID | SPINAL-CORD-INJURY | HYDROGEN-PEROXIDE | STROMAL CELLS | PARKINSONS-DISEASE | Cell Survival - drug effects | Reactive Oxygen Species - metabolism | Humans | Oxidative Stress - physiology | Cells, Cultured | Mesenchymal Stem Cells - physiology | Culture Media, Conditioned - pharmacology | Adipocytes - drug effects | Adipocytes - physiology | Coculture Techniques - methods | Reactive Oxygen Species - antagonists & inhibitors | Neuroprotective Agents - pharmacology | Cell Differentiation - drug effects | Mesenchymal Stem Cells - drug effects | Cell Line, Tumor | Oxidative Stress - drug effects | Acetylcysteine - toxicity | Cell Differentiation - physiology | Cell Survival - physiology | Antioxidants | Nervous system diseases | Cysteine | Thiols | Analysis | Stem cells | Transplantation | Health aspects | Cystine | Neurophysiology | Neuroprotection | Glial cell line-derived neurotrophic factor | Reactive oxygen species | Cell survival | Hydrogen peroxide | Mesenchyme | Transforming growth factor | Inflammation | Neurotrophic factors | Neuronal-glial interactions | Neurotoxicity | Brain-derived neurotrophic factor | Supplementation | Redox properties | Growth factors
Journal Article
Journal of Neurochemistry, ISSN 0022-3042, 12/2009, Volume 111, Issue 5, pp. 1192 - 1201
Journal Article