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Volumn 33, Issue 3, 2013, Pages 1744-1752
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Development, characterization, and photocytotoxicity assessment on human melanoma of chloroaluminum phthalocyanine nanocapsules
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Author keywords
Chloroaluminum phthalocyanine; Factorial design; Melanoma skin cancer; Nanocapsules; Photocytotoxicity; Photodynamic therapy
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Indexed keywords
CELL SURVIVAL;
CHLOROALUMINUM PHTHALOCYANINE;
DRUG CONCENTRATION;
ENCAPSULATION EFFICIENCY;
FACTORIAL DESIGN;
FULL FACTORIAL DESIGN;
HYDROPHOBIC DRUG;
LIGHT IRRADIATIONS;
MALIGNANT MELANOMA;
MEAN DIAMETER;
MELANOMA CELLS;
NANO-ENCAPSULATION;
NANOPRECIPITATION METHOD;
NEGATIVE ZETA POTENTIALS;
OPTIMIZATION STUDIES;
PHOTOCYTOTOXICITY;
PHYSICAL STABILITY;
POLOXAMER;
POLY(D ,L-LACTIDE-CO- GLYCOLIDE);
POLYDISPERSITY INDICES;
POLYMER MEMBRANE;
SINGLET OXYGEN;
SINGLET OXYGEN PRODUCTION;
SKIN CANCERS;
SOYBEAN OIL;
CELL CULTURE;
DRUG DOSAGE;
ENCAPSULATION;
FUNCTIONAL POLYMERS;
HYDROPHOBICITY;
MORPHOLOGY;
NANOCAPSULES;
NITROGEN COMPOUNDS;
OILSEEDS;
ONCOLOGY;
OPTIMIZATION;
OXYGEN;
PHOSPHOLIPIDS;
PHOTODYNAMIC THERAPY;
PHOTOSENSITIZERS;
QUANTUM YIELD;
ZETA POTENTIAL;
DERMATOLOGY;
CHLOROALUMINUM PHTHALOCYANINE;
INDOLE DERIVATIVE;
NANOCAPSULE;
ORGANOMETALLIC COMPOUND;
SINGLET OXYGEN;
ARTICLE;
CELL DEATH;
CELL SURVIVAL;
CHEMISTRY;
DRUG EFFECT;
DRUG STABILITY;
FACTORIAL DESIGN;
HUMAN;
LIGHT;
MELANOMA SKIN CANCER;
METABOLISM;
PARTICLE SIZE;
PHOTOCYTOTOXICITY;
PHOTODYNAMIC THERAPY;
RADIATION EXPOSURE;
STATIC ELECTRICITY;
TUMOR CELL LINE;
ULTRASTRUCTURE;
DRUG EFFECTS;
MEDICINAL CHEMISTRY;
RADIATION RESPONSE;
CHLOROALUMINUM PHTHALOCYANINE;
FACTORIAL DESIGN;
MELANOMA SKIN CANCER;
NANOCAPSULES;
PHOTOCYTOTOXICITY;
PHOTODYNAMIC THERAPY;
CELL DEATH;
CELL LINE, TUMOR;
CELL SURVIVAL;
CHEMISTRY, PHARMACEUTICAL;
DRUG STABILITY;
HUMANS;
INDOLES;
LIGHT;
NANOCAPSULES;
ORGANOMETALLIC COMPOUNDS;
PARTICLE SIZE;
SINGLET OXYGEN;
STATIC ELECTRICITY;
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EID: 84873407331
PISSN: 09284931
EISSN: None
Source Type: Journal
DOI: 10.1016/j.msec.2012.12.088 Document Type: Article |
Times cited : (64)
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References (53)
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