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Volumn 10, Issue 8, 2010, Pages 898-905
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Reductive degradation behavior of bioreducible poly(disulfide amine) for enhancing SiRNA efficiency
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Author keywords
Biodegradability; Bioreducible cationic polymer; Cytoplasmic localization; Nanoparticles; Polyelectrolyte complexes; Polyelectrolytes; siRNA delivery
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Indexed keywords
AQUEOUS PHASE;
CATIONIC POLYMERS;
CYTOPLASMIC LOCALIZATION;
DEGRADATION BEHAVIOR;
DEGRADATION CHARACTERISTICS;
DISULFIDE BONDS;
DISULFIDE LINKAGES;
ELECTROSTATIC INTERACTIONS;
GENE CARRIER;
MICHAEL-TYPE POLYADDITIONS;
NANO SCALE;
POLYELECTROLYTE COMPLEXES;
POLYMER BACKBONES;
POLYPLEXES;
SIRNA DELIVERY;
THERAPEUTIC APPLICATION;
BIODEGRADABLE POLYMERS;
BIODEGRADATION;
COMPLEXATION;
CYTOLOGY;
DEGRADATION;
DYES;
GENE TRANSFER;
NANOPARTICLES;
POLYELECTROLYTES;
POLYMERS;
RNA;
CATION;
COPOLYMER;
DISULFIDE;
DRUG CARRIER;
HUMAN VASCULOTROPIN;
MONOMER;
NANOPARTICLE;
POLY(DISULFIDE AMINE);
POLYELECTROLYTE;
POLYMER;
SELF ASSEMBLED MONOLAYER;
SMALL INTERFERING RNA;
UNCLASSIFIED DRUG;
VASCULOTROPIN;
AQUEOUS SOLUTION;
ARTICLE;
BIODEGRADATION;
CANCER CELL;
CELLULAR DISTRIBUTION;
CONTROLLED STUDY;
CYTOPLASM;
DISULFIDE BOND;
DRUG CYTOTOXICITY;
DRUG DELIVERY SYSTEM;
DRUG EFFICACY;
GENE SILENCING;
HUMAN;
HUMAN CELL;
IN VITRO GENE TRANSFER;
MALE;
MICROENVIRONMENT;
MOLECULAR INTERACTION;
NANOANALYSIS;
POLYMERIZATION;
PROSTATE CANCER;
RNA INTERFERENCE;
STATIC ELECTRICITY;
SYNTHESIS;
ZETA POTENTIAL;
ACRYLIC RESINS;
BIOCOMPATIBLE MATERIALS;
CELL LINE, TUMOR;
DISULFIDES;
ELECTROPHORESIS, POLYACRYLAMIDE GEL;
HUMANS;
MAGNETIC RESONANCE SPECTROSCOPY;
OXIDATION-REDUCTION;
RNA, SMALL INTERFERING;
TRANSFECTION;
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EID: 77956505985
PISSN: 16165187
EISSN: 16165195
Source Type: Journal
DOI: 10.1002/mabi.200900482 Document Type: Article |
Times cited : (24)
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References (24)
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