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ACS Nano, ISSN 1936-0851, 08/2013, Volume 7, Issue 8, pp. 6605 - 6618
Journal Article
Biochemistry, ISSN 0006-2960, 02/2016, Volume 55, Issue 7, pp. 985 - 988
Journal Article
Pharmaceutical Research, ISSN 0724-8741, 2007, Volume 24, Issue 8, pp. 1590 - 1598
Knowledge about the uptake mechanism and subsequent intracellular routing of non-viral gene delivery systems is important for the development of more efficient... 
Biomedical Engineering | Biochemistry, general | gene delivery | Biomedicine | Pharmacy | cationic polymers | Medical Law | endocytosis | Pharmacology/Toxicology | caveolae | Gene delivery | Endocytosis | Cationic polymers | Caveolae | PATHWAYS | POLYPLEXES | INTRACELLULAR FATE | CHOLESTEROL | POLYETHYLENIMINE | CHEMISTRY, MULTIDISCIPLINARY | DELIVERY | INTERNALIZATION | MEDIATED ENDOCYTOSIS | MACROPINOCYTOSIS | PHARMACOLOGY & PHARMACY | EFFICIENCY | Luciferases - metabolism | Nocodazole - pharmacology | Cercopithecus aethiops | Caveolae - drug effects | Methacrylates - chemistry | beta-Cyclodextrins - pharmacology | Clathrin-Coated Vesicles - metabolism | Luciferases - genetics | Flow Cytometry | Macromolecular Substances - chemistry | Transfection - methods | Polyethyleneimine - chemistry | Biological Transport - drug effects | Fluorescent Dyes - chemistry | Polyamines - chemistry | Caveolae - metabolism | Cholera Toxin - metabolism | Endocytosis - drug effects | Enzyme Inhibitors - pharmacology | Nylons - chemistry | Chlorpromazine - pharmacology | Clathrin-Coated Vesicles - drug effects | DNA - chemistry | Animals | Androstadienes - pharmacology | Genistein - pharmacology | Macromolecular Substances - pharmacokinetics | Cholera Toxin - pharmacokinetics | Transferrin - pharmacokinetics | Transferrin - metabolism | COS Cells | Macromolecular Substances - metabolism | Microscopy, Fluorescence | Gene expression | Cholera toxin | Cellular biology | Deoxyribonucleic acid | DNA | Pharmacology | Gene therapy | Polymers | Research Paper
Journal Article
Journal of Biological Chemistry, ISSN 0021-9258, 10/2013, Volume 288, Issue 42, pp. 30172 - 30180
Background: Vesiculation of tubular recycling endosomes is essential for the recycling of receptors and lipids to the plasma membrane. Results: A novel... 
Membrane Trafficking | Membrane Biogenesis | Subcellular Organelles | MEMBRANE | BIOCHEMISTRY & MOLECULAR BIOLOGY | EHD1 INTERACT | Cell Biology | Membrane Recycling | Protein Sorting | Vesicles | TRANSPORT | Liposomes | Receptor Recycling | CAVEOLAE | ASSOCIATION | Endosomes | INSIGHTS | Adaptor Proteins, Signal Transducing - chemistry | Cytoskeletal Proteins - genetics | Vesicular Transport Proteins - metabolism | Humans | LIM Domain Proteins - metabolism | Endosomes - metabolism | DNA-Binding Proteins - metabolism | Endosomes - ultrastructure | Carrier Proteins - chemistry | Cytoskeletal Proteins - metabolism | Nuclear Proteins - genetics | LIM Domain Proteins - chemistry | Endosomes - genetics | Vesicular Transport Proteins - genetics | Adenosine Triphosphatases - metabolism | Nuclear Proteins - metabolism | Vesicular Transport Proteins - chemistry | Cytoskeletal Proteins - chemistry | DNA-Binding Proteins - genetics | Nuclear Proteins - chemistry | DNA-Binding Proteins - chemistry | Intracellular Membranes - chemistry | Carrier Proteins - genetics | Carrier Proteins - metabolism | Adaptor Proteins, Signal Transducing - genetics | Endosomes - chemistry | Adenosine Triphosphatases - chemistry | LIM Domain Proteins - genetics | Adenosine Triphosphatases - genetics | HeLa Cells | Adaptor Proteins, Signal Transducing - metabolism | Intracellular Membranes - metabolism
Journal Article
Journal of Biological Chemistry, ISSN 0021-9258, 08/2017, Volume 292, Issue 34, pp. 14292 - 14307
Caveolae are bulb-shaped nanodomains of the plasma membrane that are enriched in cholesterol and sphingolipids. They have many physiological functions,... 
PROTEIN | TIRF microscopy | BIOCHEMISTRY & MOLECULAR BIOLOGY | phosphatidylinositol signaling | phosphoinositides | single-particle analysis | ORGANIZATION | phosphatidylserine | SCAFFOLDING REGION | CAVIN | LOCAL-ANESTHETICS | SINGLE-PARTICLE TRACKING | microscopic imaging | PHOSPHOLIPID-BILAYERS | CELL | BINDING | DOMAINS | caveolae | RNA-Binding Proteins - genetics | Phosphatidylinositol Phosphates - metabolism | Cricetulus | Caveolae - ultrastructure | Humans | Microscopy, Video | Recombinant Fusion Proteins - metabolism | Time-Lapse Imaging | Phosphatidylinositol Phosphates - chemistry | Cell Tracking | Cell Membrane - chemistry | Phosphatidylinositol 4,5-Diphosphate - metabolism | RNA Interference | Mesocricetus | Cell Membrane - metabolism | Phosphatidylinositol 4,5-Diphosphate - chemistry | RNA-Binding Proteins - antagonists & inhibitors | Caveolin 1 - antagonists & inhibitors | Cell Line | Microscopy, Electron, Transmission | Caveolae - metabolism | Caveolin 1 - chemistry | Phosphatidylserines - metabolism | RNA-Binding Proteins - chemistry | Phosphatidylserines - chemistry | Caveolin 1 - genetics | Cell Membrane - ultrastructure | Recombinant Fusion Proteins - chemistry | Caveolae - chemistry | Protein Transport | Caveolin 1 - metabolism | Animals | Models, Biological | Luminescent Proteins - genetics | Kinetics | RNA-Binding Proteins - metabolism | Luminescent Proteins - metabolism | Editors' Picks
Journal Article
Colloids and Surfaces B: Biointerfaces, ISSN 0927-7765, 06/2016, Volume 142, pp. 272 - 280
Core shell alginate-based nanocapsules (CaANC) internalized in keratinocytes. Calcium alginate nanocarriers (CaANCs) were developed as a potential tool for... 
Keratinocyte | Endocytosis | Alginate | Drug delivery | Core-shell nanocarrier | Förster resonance energy transfer (FRET) | LIPID NANOPARTICLES | MATERIALS SCIENCE, BIOMATERIALS | ASSAY | HUMAN SKIN | PARTICLES | DRUG-DELIVERY | CHEMISTRY, PHYSICAL | RESONANCE ENERGY-TRANSFER | PENETRATION | MECHANISMS | OIL | BIOPHYSICS | ENDOCYTIC PATHWAYS | Forster resonance energy transfer (FRET) | Carbocyanines - chemistry | Nanoparticles - chemistry | Caveolae - ultrastructure | Humans | Drug Carriers - chemistry | Drug Compounding | Fluorescence Resonance Energy Transfer | Glucuronic Acid - chemistry | Keratinocytes - ultrastructure | Cell Line | Cell Survival - drug effects | Fluorescent Dyes - chemistry | Microscopy, Electron, Transmission | Caveolae - metabolism | Nanoparticles - ultrastructure | Hexuronic Acids - chemistry | Drug Carriers - pharmacology | Particle Size | Keratinocytes - drug effects | Keratinocytes - metabolism | Alginates - chemistry | Drug Liberation | Hydrophobic and Hydrophilic Interactions | Kinetics | Drugs | Drug delivery systems | Vehicles | Index Medicus | Flow cytometry | Cellular | Toxicity | Surface chemistry | Cosmetics | Nanostructure | Culture | Life Sciences | Bioengineering | Analytical chemistry | Human health and pathology | Dermatology | Galenic pharmacology | Pharmaceutical sciences | Chemical Sciences | Biomaterials
Journal Article
Journal of Controlled Release, ISSN 0168-3659, 2008, Volume 130, Issue 1, pp. 86 - 94
Journal Article
Biochemical Journal, ISSN 0264-6021, 09/2004, Volume 382, Issue 2, pp. 451 - 461
Despite the importance of cholesterol in the formation and function of caveolar microdomains in plasma membranes, almost nothing is known regarding the... 
Caveola | Sterol carrier protein-2 (SCP-2) | Sterol exchange assay | Raft | Cholesterol | Plasma membrane | sterol exchange assay | ACID | plasma membrane | ALZHEIMERS-DISEASE | BIOCHEMISTRY & MOLECULAR BIOLOGY | raft | TRAFFICKING | caveola | STEROL CARRIER PROTEIN-2 | PLASMA-MEMBRANE | COEXISTING GEL | FLUORESCENCE | FLUID LIPID PHASES | cholesterol | sterol carrier protein-2 (SCP-2) | CAVEOLIN | BINDING | Carbocyanines - chemistry | Molecular Probe Techniques | Sterols - metabolism | Ergosterol - chemistry | Ergosterol - analogs & derivatives | Solutions - chemistry | Cell Membrane - chemistry | Lipids - chemistry | Peptides - metabolism | Fluorescence Polarization - methods | Cell Membrane - metabolism | Gels - chemistry | Methylamines - chemistry | Fibroblasts - chemistry | Diphenylhexatriene - chemistry | Protein Structure, Tertiary | Cell Line | Fluorescent Dyes - chemistry | Propionates - chemistry | Caveolae - metabolism | Sterols - chemistry | Membrane Microdomains - chemistry | Cholesterol - metabolism | Caveolae - chemistry | Molecular Probes - chemistry | Animals | Carrier Proteins - metabolism | Fatty Acids, Unsaturated - chemistry | Mice | Subcellular Fractions - chemistry | DPH-TMA, DPH-trimethylammonium | trans-parinaric acid, 9E,11E,13E,15E-octatetradecanoic acid | DiI1, 1,1′,3,3,3′,3′-hexamethylindodicarbocyanine iodide | L-FABP, liver fatty-acid-binding protein | DHE, dehydroergosterol | DPH, 1,6-diphenyl-1,3,5-hexatriene | DPH-Pro, 3(DPH)-propionic acid | 2, half-time | SCP-2, sterol carrier protein-2 | DRM, detergent-resistant membrane | FBS, foetal bovine serum | cis-parinaric acid, 9Z,11E,13E,15Z-octatetradecanoic acid | DiI18, 1,1′-dioctadecyl-3,3,3′,3′-tetramethylindocarbocyanine perchlorate | HDL, high-density lipoprotein | LDL, low-density lipoprotein | NBD-stearic acid, 12-(N-methyl)-N-[(7-nitrobenz-2-oxa-1,3-diazol-4-yl)amino]-octadecanoic acid
Journal Article