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Volumn 49, Issue 93, 2013, Pages 10989-10991
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Shape design of high drug payload nanoparticles for more effective cancer therapy
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Author keywords
[No Author keywords available]
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Indexed keywords
10 HYDROXYCAMPTOTHECIN;
MACROGOL;
NANOPARTICLE;
NANOROD;
NANOSPHERE;
ANIMAL EXPERIMENT;
ANIMAL MODEL;
ANTINEOPLASTIC ACTIVITY;
ARTICLE;
CANCER CELL CULTURE;
CANCER CHEMOTHERAPY;
CANCER GROWTH;
CELL STRAIN KB;
CHEMICAL COMPOSITION;
CIRCULATION TIME;
CONTROLLED STUDY;
DRUG ACCUMULATION;
DRUG CYTOTOXICITY;
DRUG EFFICACY;
HUMAN;
HUMAN CELL;
HUMAN CELL CULTURE;
HYDRODYNAMICS;
IN VITRO STUDY;
IN VIVO STUDY;
INTERNALIZATION;
MOUSE;
NONHUMAN;
PARTICLE SIZE;
SCANNING ELECTRON MICROSCOPY;
SURFACE CHARGE;
TRANSMISSION ELECTRON MICROSCOPY;
ANIMALS;
ANTINEOPLASTIC AGENTS, PHYTOGENIC;
CAMPTOTHECIN;
CELL LINE, TUMOR;
CELL SURVIVAL;
DRUG CARRIERS;
HALF-LIFE;
HUMANS;
MICE;
MICE, INBRED BALB C;
MICE, NUDE;
NANOPARTICLES;
NANOTUBES;
NEOPLASMS;
PARTICLE SIZE;
POLYETHYLENE GLYCOLS;
TRANSPLANTATION, HETEROLOGOUS;
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EID: 84886852749
PISSN: 13597345
EISSN: 1364548X
Source Type: Journal
DOI: 10.1039/c3cc46718j Document Type: Article |
Times cited : (46)
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References (18)
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