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Journal of controlled release, ISSN 0168-3659, 2016, Volume 240, pp. 191 - 201
Poly(ethylene glycol)-block-poly(D,L-lactic acid) (PEG-b-PLA) micelles and poly(D,L-lactic-co-glycolic acid... 
Drug combination | Prodrugs | Hydrogels | Block copolymer | Controlled release | Drug solubilization | Polymeric micelles | DIBLOCK COPOLYMERS | CREMOPHOR-FREE | ANTICANCER DRUG | BLOCK-COPOLYMER MICELLES | CHEMISTRY, MULTIDISCIPLINARY | CANCER-THERAPY | BREAST-CANCER | PARENTERAL DELIVERY | IN-VIVO | ACID) MICELLES | PHARMACOLOGY & PHARMACY | Neoplasms - metabolism | Paclitaxel - metabolism | Humans | Polyethylene Glycols - chemistry | Antineoplastic Agents - administration & dosage | Phase Transition | Antineoplastic Agents - metabolism | Paclitaxel - chemistry | Antineoplastic Agents, Phytogenic - administration & dosage | Lactates - administration & dosage | Micelles | Polyesters - administration & dosage | Antineoplastic Agents, Phytogenic - metabolism | Paclitaxel - administration & dosage | Lactates - chemistry | Polyethylene Glycols - metabolism | Gels | Solubility | Antineoplastic Agents, Phytogenic - chemistry | Antineoplastic Agents - chemistry | Polyethylene Glycols - administration & dosage | Neoplasms - drug therapy | Polyesters - chemistry | Animals | Lactates - metabolism | Polyesters - metabolism | Drug Delivery Systems - trends | Drug Delivery Systems - methods | Drugs | Chemotherapy | Drug delivery systems | Polyethylene glycol | Polyols | Organic acids | Vehicles | Cancer | Medical research | Drugstores | Antineoplastic agents | Antimitotic agents | Pharmacy | Medicine, Experimental | Research institutes | Lactic acid | Drug therapy, Combination | controlled release | drug solubilization | polymeric micelles | drug combination | hydrogels | prodrugs
Journal Article
Biomacromolecules, ISSN 1525-7797, 05/2014, Volume 15, Issue 5, pp. 1543 - 1559
Journal Article
Biomaterials, ISSN 0142-9612, 2013, Volume 34, Issue 4, pp. 1213 - 1222
Abstract To introduce pH sensitivity into the DSPE-PEG-based micellar system and achieve the quick intracellular drug release in response to the acidity in endosomes, a mixed polymeric micelle... 
Advanced Basic Science | Dentistry | pH-sensitive | Mixed polymeric micelles | DSPE-PEG | Poly(l-histidine) | Cytosolic drug delivery | Tumor targeting | PH-sensitive | MATERIALS SCIENCE, BIOMATERIALS | ENHANCED CYTOTOXICITY | ENGINEERING, BIOMEDICAL | Poly(L-histidine) | DOXORUBICIN | POLYMERIC MICELLES | MIXED MICELLES | CANCER | PACLITAXEL | NANOPARTICLES | IN-VITRO | SYSTEMS | LIPOSOMES | Nanocapsules - administration & dosage | Antineoplastic Agents, Phytogenic - chemistry | Polyethylene Glycols - chemistry | Paclitaxel - pharmacokinetics | Breast Neoplasms - drug therapy | Nanocapsules - chemistry | Breast Neoplasms - metabolism | Paclitaxel - chemistry | Antineoplastic Agents, Phytogenic - administration & dosage | Animals | Breast Neoplasms - pathology | Micelles | Cell Line, Tumor | Cytosol - metabolism | Mice | Proteins - chemistry | Diffusion | Paclitaxel - administration & dosage | Antineoplastic Agents, Phytogenic - pharmacokinetics | Phosphatidylethanolamines - chemistry | Hydrogen-Ion Concentration | Drugs | Ethylene glycol | Drug delivery systems | Biological products | Histidine | Analysis | Paclitaxel | Monoclonal antibodies | Nuclear magnetic resonance spectroscopy | Vehicles | Surgical implants | Cellular | Effectiveness | Polyethylene glycol | Biomaterials | Endosomes
Journal Article
Journal Article
Biomaterials, ISSN 0142-9612, 2015, Volume 84, pp. 86 - 98
Abstract Nanoparticle-mediated siRNA delivery is a promising therapeutic approach, however, the processes required for transport of these materials across the... 
Advanced Basic Science | Dentistry | Gene silencing | β-Cyclodextrin | siRNA | Polyrotaxane | Small angle X-ray scattering | Cryoelectron microscopy | MATERIALS SCIENCE, BIOMATERIALS | GENE DELIVERY | GLYCOL) POLYROTAXANES | ENGINEERING, BIOMEDICAL | CELLULAR INTERNALIZATION | BIOCLEAVABLE POLYROTAXANES | beta-Cyclodextrin | SMALL INTERFERING RNA | GEMINI LIPIDS | POLY(ETHYLENE GLYCOL) | PLASMID DNA | ALPHA-CYCLODEXTRINS | EFFICIENT | 2-Hydroxypropyl-beta-cyclodextrin | NIH 3T3 Cells | Humans | Polyethylene Glycols - chemistry | Structure-Activity Relationship | Gene Knockdown Techniques | Flow Cytometry | Rotaxanes - chemistry | RNA Interference | Cell Death | Cyclodextrins - chemistry | beta-Cyclodextrins - chemical synthesis | Poloxamer - chemistry | Green Fluorescent Proteins - metabolism | Propylene Glycols - chemical synthesis | Cell Survival | Genetic Vectors - metabolism | DNA - metabolism | Static Electricity | Plasmids - metabolism | Animals | beta-Cyclodextrins - chemistry | Propylene Glycols - chemistry | Mice | Polyethylene Glycols - chemical synthesis | HeLa Cells | RNA, Small Interfering - metabolism | Index Medicus | Biotechnology | Cationic | Mathematical analysis | Charge | Nanostructure | Biological | Vectors (mathematics) | Viability | small angle x-ray scattering | gene silencing | cryoelectron microscopy | β-cyclodextrin | polyrotaxane
Journal Article
Journal Article
Journal of biomedical materials research. Part A, ISSN 1549-3296, 2014, Volume 102, Issue 5, pp. 1500 - 1509
.... Triblock copolymer of poly(ethylene glycol)‐poly(ε‐caprolactone)‐poly(ethylene glycol) (PEG‐PCL‐PEG, PECE) was prepared by ring opening bulk copolymerization and characterized using FT... 
injectable hydrogel | biodegradable block copolymer | drug delivery | insulin | AQUEOUS-SOLUTIONS | MATERIALS SCIENCE, BIOMATERIALS | THERMOSENSITIVE HYDROGEL | BLOCK-COPOLYMERS |