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Journal of Controlled Release, ISSN 0168-3659, 2007, Volume 120, Issue 1, pp. 18 - 26
Targeting drugs to their sites of action is still a major challenge in pharmaceutical research. In this study, polylactic-co-glycolic acid (PLGA)... 
Nanoparticles | Active targeting | PLGA | Monoclonal antibody | Cell co-culture | DRUG | cell co-culture | EXOCYTOSIS | CONJUGATED NANOPARTICLES | POLY(LACTIDE-CO-GLYCOLIDE) NANOPARTICLES | POLY(D,L-LACTIDE-CO-GLYCOLIDE) | ENDOCYTOSIS | ADSORPTION | CHEMISTRY, MULTIDISCIPLINARY | DELIVERY | nanoparticles | CYSTATIN | PHARMACOLOGY & PHARMACY | monoclonal antibody | active targeting | LIPOSOMES | Surface Plasmon Resonance | Antibody Specificity | Polyglycolic Acid - chemical synthesis | Breast Neoplasms - immunology | Coculture Techniques | Humans | Fluorescent Dyes - metabolism | Breast Neoplasms - metabolism | Drug Carriers | Flow Cytometry | Keratins - metabolism | Antigens, Neoplasm - metabolism | Fluorescence Resonance Energy Transfer | Female | Cell Membrane - metabolism | Polyglycolic Acid - metabolism | Antibodies, Monoclonal - chemistry | Antibodies, Monoclonal - immunology | Caco-2 Cells | Lactic Acid - chemistry | Keratins - immunology | Polymers - chemical synthesis | Antigens, Neoplasm - immunology | Lactic Acid - metabolism | Breast Neoplasms - pathology | Polyglycolic Acid - chemistry | Polymers - chemistry | Antibodies, Monoclonal - metabolism | Lactic Acid - chemical synthesis | Microscopy, Fluorescence | Polymers - metabolism | Fluorescein - metabolism | Antimitotic agents | Monoclonal antibodies | Antineoplastic agents | Nanotechnology
Journal Article
Journal Article
Archives of Toxicology, ISSN 0340-5761, 6/2013, Volume 87, Issue 6, pp. 1075 - 1086
The aim of this study is to uncover the size influence of poly (lactic-co-glycolic acid) (PLGA) and titanium dioxide (TiO2) nanoparticles on their potential... 
Nanoparticles | Nanotoxicity | Biomedicine | Environmental Health | PLGA | Occupational Medicine/Industrial Medicine | Cytotoxicity | Pharmacology/Toxicology | TiO 2 | Protein adsorption | Biomedicine general | TiO | OXIDATIVE STRESS | BRONCHIAL EPITHELIAL-CELLS | ZINC-OXIDE | MACROPHAGE | TOXICITY | FORMULATION | FIBROBLASTS | GENOTOXICITY | ULTRAFINE PARTICLES | NANOSPHERES | TOXICOLOGY | TiO2 | Tumor Necrosis Factor-alpha - metabolism | Epithelial Cells - metabolism | Reactive Oxygen Species - metabolism | Epithelial Cells - drug effects | Humans | Polyglycolic Acid - toxicity | Membrane Potential, Mitochondrial - drug effects | Dose-Response Relationship, Drug | Time Factors | Cell Membrane - pathology | Inflammation Mediators - metabolism | Cell Membrane - metabolism | Lung - metabolism | Polyglycolic Acid - metabolism | Cell Membrane - drug effects | Macrophages - immunology | Cell Survival - drug effects | Lung - pathology | Macrophages - pathology | Lactic Acid - metabolism | Epithelial Cells - pathology | Serum Albumin, Bovine - metabolism | Particle Size | Titanium - toxicity | Macrophages - metabolism | Metal Nanoparticles - toxicity | Animals | Adsorption | Calcium Signaling - drug effects | Epithelial Cells - immunology | Lung - drug effects | Protein Binding | Macrophages - drug effects | Lactic Acid - toxicity | Mice | Oxidative Stress - drug effects | Lung - immunology | Titanium - metabolism | Proteins | Toxicity | Index Medicus
Journal Article
Biomaterials, ISSN 0142-9612, 2009, Volume 30, Issue 19, pp. 3297 - 3306
Journal Article
ACS Nano, ISSN 1936-0851, 03/2014, Volume 8, Issue 3, pp. 2148 - 2160
Targeted immune tolerance is a coveted therapy for the treatment of a variety of autoimmune diseases, as current treatment options often involve nonspecific... 
regulatory T cells | experimental autoimmune encephalomyelitis | PLG nanoparticles | multiple sclerosis | autoimmune disease | tolerance | anergy | ENCEPHALOMYELITIS | ANTI-CD3 MONOCLONAL-ANTIBODY | MATERIALS SCIENCE, MULTIDISCIPLINARY | T-CELL UNRESPONSIVENESS | PREVENTION | CHEMISTRY, PHYSICAL | NANOSCIENCE & NANOTECHNOLOGY | MICROPARTICLES | MYELIN ANTIGEN | CHEMISTRY, MULTIDISCIPLINARY | PEPTIDE | DELIVERY | PROGRESSIVE MULTIFOCAL LEUKOENCEPHALOPATHY | SELF-TOLERANCE | Recurrence | Spinal Cord - drug effects | Spinal Cord - metabolism | Immunosuppression - methods | Encephalomyelitis, Autoimmune, Experimental - immunology | Peptide Fragments - pharmacology | Drug Carriers - chemistry | Brain - metabolism | T-Lymphocytes - drug effects | Nanoparticles - metabolism | Peptide Fragments - immunology | Female | Polyglycolic Acid - metabolism | Safety | Polyethylenes - chemistry | Drug Carriers - metabolism | Lactic Acid - chemistry | Encephalomyelitis, Autoimmune, Experimental - drug therapy | Lactic Acid - metabolism | Maleates - chemistry | Brain - drug effects | Spinal Cord - immunology | Peptide Fragments - chemistry | Animals | Polyglycolic Acid - chemistry | Antigens - immunology | T-Lymphocytes - immunology | Mice | Peptide Fragments - therapeutic use | Brain - immunology | Cytokines - biosynthesis | Platforms | Peptides | Myelin | Biodegradability | Medical services | Mathematical models | Tolerances | Nanostructure | Autoimmune diseases
Journal Article
Journal of Cellular Physiology, ISSN 0021-9541, 02/2018, Volume 233, Issue 2, pp. 1168 - 1178
Magnetic nanoparticles (MNPs) are used as contrast agents and targeted drug delivery systems (TDDS) due to their favorable size, surface charge, and magnetic... 
cell stiffness | atomic force microscopy | interface | cytotoxicity | magentic nanoparticles | IRON-OXIDE NANOPARTICLES | HYPERTHERMIA | HYDROGELS | PHYSIOLOGY | DRUG-DELIVERY | RELEASE | FATE | QUANTUM DOTS | CELL BIOLOGY | EXTRACELLULAR-MATRIX | DIFFERENTIATION | Biocompatible Materials - metabolism | NIH 3T3 Cells | Alginates - toxicity | Hexuronic Acids - toxicity | Biocompatible Materials - chemistry | Glucuronic Acid - metabolism | Polyglycolic Acid - toxicity | Alginates - metabolism | Biocompatible Materials - toxicity | Biological Transport | Surface Properties | Polyglycolic Acid - metabolism | Glucuronic Acid - chemistry | Fibroblasts - metabolism | Cell Survival - drug effects | Cross-Linking Reagents - chemistry | Lactic Acid - chemistry | Cross-Linking Reagents - toxicity | Lactic Acid - metabolism | Hexuronic Acids - chemistry | Magnetite Nanoparticles - toxicity | Fibroblasts - pathology | Cross-Linking Reagents - metabolism | Particle Size | Magnetite Nanoparticles - chemistry | Animals | Alginates - chemistry | Fibroblasts - drug effects | Magnetics - methods | Nanomedicine - methods | Polyglycolic Acid - chemistry | Lactic Acid - toxicity | Mice | Glucuronic Acid - toxicity | Magnetic Fields | Hexuronic Acids - metabolism | Nanoparticles | Drugs | Usage | Drug delivery systems | Iron compounds | Ferric oxide | Precipitation (Meteorology) | Magnetic fields | Mechanical engineering | Magnetic properties | Vehicles | Toxicity | Emulsification | Alginic acid | Surface chemistry | Iron | Drug delivery | Polylactide-co-glycolide | Glycolic acid | Fibroblasts | Biocompatibility | Polymers | Contrast media | Surface charge | Spraying | Mechanical properties | Contrast agents | Sodium | Magnetism | Sodium alginate | Intracellular | Iron oxides | Index Medicus
Journal Article
Journal Article
Biochemical Pharmacology, ISSN 0006-2952, 02/2010, Volume 79, Issue 3, pp. 330 - 338
Curcumin, a yellow pigment present in the spice turmeric (Curcuma longa), has been linked with antioxidant, anti-inflammatory, antiproliferative, anticancer,... 
Nanoparticles | Inflammation | TNF-alpha | Apoptosis | CELLS | ACTIVATION | ANGIOGENESIS | DOWN-REGULATION | KAPPA-B |