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Journal ArticleDOI

Polymeric worm micelles as nano-carriers for drug delivery.

TLDR
W worm micelles as blends of degradable polylactic acid and inert block copolymer amphiphiles were prepared for controlled release and initial study of carrier transport through nano-porous media, suggesting a new class of hydrophobic drug nano-carriers that are capable of tissue permeation as well as controlled release.
Abstract
Nanoscale carriers of active compounds, especially drugs, need not be spherical in shape. Worm micelles as blends of degradable polylactic acid (PLA) and inert block copolymer amphiphiles were prepared for controlled release and initial study of carrier transport through nano-porous media. The loading capacity of a typical hydrophobic drug, Triamterene, and the release of hydrophobic dyes were evaluated together with morphological changes of the micelles. Degradation of PLA by hydrolysis led to the self-shortening of worms and a clear transition towards spherical micelles, correlating with the release of hydrophobic dyes. Perhaps equally important for application is the flexibility of worm micelles, which we show allows them to penetrate nanoporous gels where 100 nm sized vesicles cannot enter. Such gels have served as tissue models, and so the results here collectively suggest a new class of hydrophobic drug nano-carriers that are capable of tissue permeation as well as controlled release.

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Multivalent Nanomaterials: Learning from Vaccines and Progressing to Antigen‐Specific Immunotherapies

TL;DR: This review highlights multivalent ligand display on linear polymers, the complex interplay of physical parameters in multivalent design, and the ability to direct the immune response by molecular and transport mechanisms.
Journal ArticleDOI

Heat-induced solubilization of curcumin in kinetically stable pluronic P123 micelles and vesicles: An exploit of slow dynamics of the micellar restructuring processes in the aqueous pluronic system.

TL;DR: The obtained results represent first systematic study on solubilization of curcumin in pluronic aggregates of various shapes and size and show kinetic stability with respect to dilution, which is an important attribute for drug delivery application.
Journal ArticleDOI

Synthetic Oral Mucin Mimic from Polymer Micelle Networks

TL;DR: The ability to recreate the fibrous like network through a series of complementary rinses of polymeric worm-like micelles, resulting in a 3D porous network that can be deposited layer-by-layer onto any surface is demonstrated.
Journal ArticleDOI

Potential applications of nanoparticles in cancer immunotherapy.

TL;DR: This review focuses on recent progress in NP-mediated immunotherapy for the treatment of cancer through the use of multifunctional nanoparticles, which have the potential to combine the delivery of a diverse range of therapeutic immunomodulators thereby increasing the efficacy of tumor cell killing.
Journal ArticleDOI

Room temperature sphere-to-rod growth and gelation of PEO–PPO–PEO triblock copolymers in aqueous salt solutions

TL;DR: The effects of NaCl and KF on the sphere-to-rod micellar growth behavior of triblock copolymers having two different compositions have been studied by dynamic light scattering, small angle neutron scattering and dilute solution viscometry.
References
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Journal ArticleDOI

Block copolymer micelles for drug delivery: design, characterization and biological significance

TL;DR: The utility of polymeric micelles formed through the multimolecular assembly of block copolymers as novel core-shell typed colloidal carriers for drug and gene targeting and their feasibility as non-viral gene vectors is highlighted.
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Polymeric micelles - a new generation of colloidal drug carriers.

TL;DR: This review examines the chemical nature of polymeric micelles as well as the methods used to characterize them with regard to drug delivery and potential medical applications, especially in cancer chemotherapy, are described and discussed.
Journal ArticleDOI

On the Origins of Morphological Complexity in Block Copolymer Surfactants

TL;DR: Experiments with poly(1,2-butadiene-b-ethylene oxide) diblock copolymers are described, which form Y-junctions and three-dimensional networks in water at weight fractions of PEO intermediate to those associated with vesicle and wormlike micelle morphologies.
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Self-porating polymersomes of PEG-PLA and PEG-PCL: hydrolysis-triggered controlled release vesicles.

TL;DR: With all compositions, in both 100 nm and giant vesicles, the average release time reflects a highly quantized process in which any given vesicle is either intact and retains its encapsulant, or is porated and slowly disintegrates.
Journal ArticleDOI

Giant Wormlike Rubber Micelles

TL;DR: A low molecular weight poly(ethyleneoxide)-poly(butadiene) (PEO-PB) diblock copolymer containing 50 weight percent PEO forms gigantic wormlike micelles at low concentrations (<5 percent by weight) in water.
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