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Volumn 433, Issue , 2014, Pages 76-85
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Synthesis, characterization, and cellular uptake of magnetic nanocarriers for cancer drug delivery
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Author keywords
Biocompatibility; Cytotoxicity; Drug delivery; Magnetic nanoparticles; Nanocomposites; Nanoprecipitation
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Indexed keywords
BIOCOMPATIBILITY;
BIODEGRADATION;
CELLS;
CHEMOTHERAPY;
CYTOTOXICITY;
DEGRADATION;
DRUG DELIVERY;
DYNAMIC LIGHT SCATTERING;
GEL PERMEATION CHROMATOGRAPHY;
INDUCTIVELY COUPLED PLASMA MASS SPECTROMETRY;
MOTION PICTURE EXPERTS GROUP STANDARDS;
NANOCOMPOSITES;
NANOPARTICLES;
POLYETHYLENE GLYCOLS;
TRANSMISSION ELECTRON MICROSCOPY;
CANCER DRUG DELIVERIES;
EXTERNAL MAGNETIC FIELD;
GEL PERMEATION CHROMATOGRAPHY (GPC);
MAGNETIC NANO-PARTICLES;
NANO PRECIPITATIONS;
SUPERPARAMAGNETIC IRON OXIDES;
TARGETED CANCER THERAPY;
TARGETED DRUG DELIVERY SYSTEMS;
CELLULAR UPTAKE;
MAGNETIC NANOCARRIERS;
POLYMERS;
BIOCOMPATIBILITY;
MACROGOL;
NANOCARRIER;
POLYMER;
SUPERPARAMAGNETIC IRON OXIDE NANOPARTICLE;
SURFACTANT;
IRON OXIDE;
SUPERPARAMAGNETIC IRON OXIDE;
ANHYDRIDES;
ANTINEOPLASTIC AGENTS;
DECANOIC ACIDS;
FERRIC COMPOUNDS;
FERRIC OXIDE;
FLUORESCENT DYES;
MONOMETHOXYPOLYETHYLENE GLYCOL;
NANOCAPSULES;
POLY (SEBACIC ANHYDRIDE);
POLYETHYLENE GLYCOLS;
ARTICLE;
BIOCOMPATIBILITY;
CELL VIABILITY;
CYTOTOXICITY;
DRUG DELIVERY SYSTEM;
DRUG SYNTHESIS;
ENCAPSULATION;
GEL PERMEATION CHROMATOGRAPHY;
HUMAN;
HUMAN CELL;
HYDRODYNAMICS;
IN VITRO STUDY;
LIGHT SCATTERING;
MAGNETIC FIELD;
MOLECULARLY TARGETED THERAPY;
PRIORITY JOURNAL;
ROOM TEMPERATURE;
CHEMICAL STRUCTURE;
INTERNALIZATION;
MACROPHAGE;
NANOENCAPSULATION;
NEOPLASM;
SYNTHESIS;
BREAST NEOPLASMS;
CELL LINE, TUMOR;
CELL SURVIVAL;
CHEMISTRY;
DOSE-RESPONSE RELATIONSHIP, DRUG;
DRUG EFFECTS;
DRUG SCREENING ASSAYS, ANTITUMOR;
FEMALE;
HUMANS;
METABOLISM;
PATHOLOGY;
ANHYDRIDES;
ANTINEOPLASTIC AGENTS;
BREAST NEOPLASMS;
CELL LINE, TUMOR;
CELL SURVIVAL;
DECANOIC ACIDS;
DOSE-RESPONSE RELATIONSHIP, DRUG;
DRUG SCREENING ASSAYS, ANTITUMOR;
FEMALE;
FERRIC COMPOUNDS;
FLUORESCENT DYES;
HUMANS;
NANOCAPSULES;
POLYETHYLENE GLYCOLS;
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EID: 84905717466
PISSN: 00219797
EISSN: 10957103
Source Type: Journal
DOI: 10.1016/j.jcis.2014.07.013 Document Type: Article |
Times cited : (34)
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References (34)
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