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Nature cell biology, ISSN 1476-4679, 2018, Volume 20, Issue 6, pp. 677 - 687
Journal Article
2011, 1, ISBN 9780520270961, x, 228
Book
Advanced materials (Weinheim), ISSN 0935-9648, 2019, Volume 31, Issue 10, pp. 1806861 - n/a
The therapeutic efficiency of allogenic/intrinsic neural stem cells (NSCs) after spinal cord injury is severely compromised because the hostile niche at the lesion site incurs massive astroglial but not neuronal differentiation of NSCs... 
spinal cord injury | lipid raft assembly | niche | living materials | neural stem cells | ectomesenchymal stem cells | FUNCTIONAL RECOVERY | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | NANOSCIENCE & NANOTECHNOLOGY | CHEMISTRY, MULTIDISCIPLINARY | DELIVERY | GROWTH | SCAFFOLDS | Cell differentiation | Neurons | Regeneration | Spinal cord | Construction materials | Rafts | Stem cells | Lipids | In vivo methods and tests | Stiffness | Inhibition | Differentiation | Substrates | Smart materials
Journal Article
Proceedings of the National Academy of Sciences - PNAS, ISSN 1091-6490, 2009, Volume 106, Issue 37, pp. 15696 - 15701
Journal Article
The Journal of cell biology, ISSN 1540-8140, 2003, Volume 163, Issue 2, pp. 351 - 362
Most epithelial cells contain two AP-1 clathrin adaptor complexes. AP-1A is ubiquitously expressed and involved in transport between the TGN and endosomes... 
Epithelial cells | Cell lines | Antibodies | Cell membranes | Kidney cells | Cells | Caco 2 cells | Freight | LLC PK1 cells | Endosomes | TGN | Basolateral sorting | Exocytosis | Exocyst | basolateral sorting | MDCK CELLS | COATED VESICLES | epithelial cells | BASOLATERAL PLASMA-MEMBRANE | CELL BIOLOGY | exocyst | TRANS-GOLGI NETWORK | exocytosis | POLARIZED EPITHELIAL-CELLS | SORTING SIGNALS | MANNOSE 6-PHOSPHATE RECEPTORS | GAMMA-ADAPTIN | CONTAINING PROTEIN | LIVING CELLS | Cell Polarity | Coated Pits, Cell-Membrane - ultrastructure | Humans | Protein Transport - physiology | Adaptor Protein Complex 1 - chemistry | Endosomes - metabolism | Adaptor Protein Complex 1 - metabolism | Cell Compartmentation | LLC-PK1 Cells | Epithelial Cells - physiology | trans-Golgi Network - metabolism | Swine | Endosomes - ultrastructure | Adenoviridae - genetics | Membrane Proteins - metabolism | Vesicular Transport Proteins | Caco-2 Cells | Protein Structure, Tertiary | Coated Pits, Cell-Membrane - metabolism | Membrane Proteins - genetics | Epithelial Cells - ultrastructure | Receptors, Transferrin - metabolism | Clathrin - metabolism | trans-Golgi Network - ultrastructure | Animals | Carrier Proteins - metabolism | Membrane Proteins - chemistry | Transport Vesicles - metabolism | Saccharomyces cerevisiae Proteins | Adenoviridae - metabolism | Adaptor Protein Complex mu Subunits | Cell Line, Transformed | Transport Vesicles - ultrastructure | Fungal Proteins - metabolism | Clathrin | Biochemistry | Research | Membrane proteins | epithelial cells; basolateral sorting; exocytosis; TGN; exocyst
Journal Article
PLoS ONE, ISSN 1932-6203, 03/2014, Volume 9, Issue 3, p. e92917
It has been proposed that differential activation kinetics allows cells to use a common set of signaling pathways to specify distinct cellular outcomes... 
PHEOCHROMOCYTOMA CELLS | SIGNALING PATHWAYS | ACTIVATED PROTEIN-KINASE | MAP KINASE | MULTIDISCIPLINARY SCIENCES | NEURONAL DIFFERENTIATION | MAMMALIAN-CELLS | PLASMA-MEMBRANE | NUCLEAR TRANSLOCATION | NERVE GROWTH-FACTOR | LIVING CELLS | NIH 3T3 Cells | Protein Transport - drug effects | Extracellular Signal-Regulated MAP Kinases - metabolism | raf Kinases - metabolism | PC12 Cells | Light | Cell Membrane - metabolism | Cell Membrane - drug effects | Neurites - drug effects | Cell Membrane - radiation effects | Cryptochromes - metabolism | Cell Differentiation - radiation effects | Protein Structure, Tertiary | MAP Kinase Signaling System - radiation effects | Proto-Oncogene Proteins c-raf | Nerve Growth Factor - pharmacology | Rats | MAP Kinase Kinase Kinases - metabolism | Neurites - metabolism | Enzyme Activation - drug effects | Enzyme Activation - radiation effects | Animals | MAP Kinase Signaling System - drug effects | Cell Differentiation - drug effects | Protein Transport - radiation effects | Cryptochromes - chemistry | Mice | Kinetics | Dose-Response Relationship, Radiation | Neurites - radiation effects | Nerve growth factor | Cellular signal transduction | Epidermal growth factor | Protein-protein interactions | Phosphorylation | Raf protein | Stimulation | Activation | Kinases | Proteins | Signal transduction | Cell growth | Cell cycle | Localization | Growth factors | Axonogenesis | Extracellular signal-regulated kinase | Gene expression | Studies | Signaling | Cell lines | Pheochromocytoma cells | Transduction | Genetic engineering | Protein interaction
Journal Article
2016, First edition., ISBN 9781455533855, xxiii, 357 pages
.... It's your fat cells that are to blame for causing excessive hunger and increased weight. By eating the wrong foods, our fat cells are triggered to take in too many calories... 
Self-care, Health | Regulation | Metabolism | Reducing diets | HEALTH & FITNESS / Diets | Weight loss
Book
Proceedings of the National Academy of Sciences - PNAS, ISSN 1091-6490, 2013, Volume 110, Issue 19, pp. 7580 - 7585
Journal Article
Journal Article