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Volumn 33, Issue 3, 2010, Pages 427-432
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In Vitro/in vivo evaluation of NCDS-micro-fabricated biodegradable implant
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Author keywords
5 Fluorouracil; Hydroxyapatite; Microfabrication; PLGA; Scaffold
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Indexed keywords
FLUOROURACIL;
HYDROXYAPATITE;
POLYGLACTIN;
POLYMER;
ANTINEOPLASTIC ANTIMETABOLITE;
LACTIC ACID;
NANOCOMPOSITE;
POLYGLYCOLIC ACID;
POLYLACTIC ACID POLYGLYCOLIC ACID COPOLYMER;
POLYLACTIC ACID-POLYGLYCOLIC ACID COPOLYMER;
TISSUE SCAFFOLD;
ANIMAL EXPERIMENT;
ANIMAL TISSUE;
ARTICLE;
BIOCOMPATIBILITY;
BIODEGRADABLE IMPLANT;
DRUG DELIVERY SYSTEM;
DRUG RELEASE;
EVALUATION;
HIGH PERFORMANCE LIQUID CHROMATOGRAPHY;
IMMUNE RESPONSE;
IN VITRO STUDY;
IN VIVO STUDY;
INFLAMMATION;
MICROSCOPY;
MICROTECHNOLOGY;
MONOCYTE;
NANO COMPOSITE DEPOSITION SYSTEM;
NONHUMAN;
POLYMORPHONUCLEAR CELL;
QUANTITATIVE ANALYSIS;
RAT;
ANIMAL;
CHEMISTRY;
DELAYED RELEASE FORMULATION;
DRUG FORMULATION;
FOREIGN BODY REACTION;
IMMUNOLOGY;
KINETICS;
MALE;
MATERIALS TESTING;
METHODOLOGY;
PHARMACEUTICS;
POROSITY;
SOLUBILITY;
SPRAGUE DAWLEY RAT;
ABSORBABLE IMPLANTS;
ANIMALS;
ANTIMETABOLITES, ANTINEOPLASTIC;
CHEMISTRY, PHARMACEUTICAL;
DELAYED-ACTION PREPARATIONS;
DRUG COMPOUNDING;
DURAPATITE;
FLUOROURACIL;
FOREIGN-BODY REACTION;
INFLAMMATION;
KINETICS;
LACTIC ACID;
MALE;
MATERIALS TESTING;
NANOCOMPOSITES;
POLYGLYCOLIC ACID;
POROSITY;
RATS;
RATS, SPRAGUE-DAWLEY;
SOLUBILITY;
TECHNOLOGY, PHARMACEUTICAL;
TISSUE SCAFFOLDS;
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EID: 77953643162
PISSN: 02536269
EISSN: 19763786
Source Type: Journal
DOI: 10.1007/s12272-010-0312-4 Document Type: Article |
Times cited : (13)
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References (12)
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