One of the major engineering challenges for the implementation of block copolymer vesicles, or polymersomes, as therapeutic drug carriers is obtaining high encapsulation efficiencies for biomolecules. Here we present it novel method for encapsulation of proteins with high encapsulation efficiency within polymersomes formed from block copolymers of poly(ethylene glycol)-bl-poly(propylene sulfide). By formulation of the neat block copolymer with a low molecular weight poly(ethylene glycol), direct hydration of the formulated mixture yielded polymersomes. We were able to achieve encapsulation efficiencies for ovalbumin at 37%. bovine serum albumin at 19%, and bovine gamma-globulin at 15% when the proteins were included in the hydration solutio...
Optimizing the shape of a nanovector influences its interaction with a cell and determines the inter...
A major limitation to current treatment regimens for diseases is the inability to adequately deliver...
Protein-containing films and microspheres, based on poly(ethylene glycol)–poly(butylene terephthalat...
Hollow vesicles made from a single or double layer of block-copolymer molecules, called polymersomes...
Polymersomes (PL), vesicles formed by self-assembly of amphiphilic block copolymers, have been descr...
Herein, we report a robust way for the formation of biodegradable poly(ethylene glycol)-block-poly(e...
Polymersomes (PL), vesicles formed by self-assembly of amphiphilic block copolymers, have been descr...
Purpose To develop a technique that maximizes the encapsulation of functional proteins within neutr...
The encapsulation of biofunctional compounds, release properties and targetability of polymersomes o...
In the last past dozen years, polymersomes (Ps) have attracted tremendous attention as versatile car...
Until now, most preparative methods used to form polymeric vesicles involve either organic cosolvent...
Development of pH sensitive biocompatible block copolymer polymersomes, which are stable in physiolo...
We describe a versatile technique for fabricating monodisperse polymersomes with biocompatible and b...
A series of four-arm star block copolymers poly(ethylene glycol)-block-poly(d,l-lactide) (PEG-PDLLA)...
The key to the use of polymersomes as effective molecular delivery systems is in the ability to desi...
Optimizing the shape of a nanovector influences its interaction with a cell and determines the inter...
A major limitation to current treatment regimens for diseases is the inability to adequately deliver...
Protein-containing films and microspheres, based on poly(ethylene glycol)–poly(butylene terephthalat...
Hollow vesicles made from a single or double layer of block-copolymer molecules, called polymersomes...
Polymersomes (PL), vesicles formed by self-assembly of amphiphilic block copolymers, have been descr...
Herein, we report a robust way for the formation of biodegradable poly(ethylene glycol)-block-poly(e...
Polymersomes (PL), vesicles formed by self-assembly of amphiphilic block copolymers, have been descr...
Purpose To develop a technique that maximizes the encapsulation of functional proteins within neutr...
The encapsulation of biofunctional compounds, release properties and targetability of polymersomes o...
In the last past dozen years, polymersomes (Ps) have attracted tremendous attention as versatile car...
Until now, most preparative methods used to form polymeric vesicles involve either organic cosolvent...
Development of pH sensitive biocompatible block copolymer polymersomes, which are stable in physiolo...
We describe a versatile technique for fabricating monodisperse polymersomes with biocompatible and b...
A series of four-arm star block copolymers poly(ethylene glycol)-block-poly(d,l-lactide) (PEG-PDLLA)...
The key to the use of polymersomes as effective molecular delivery systems is in the ability to desi...
Optimizing the shape of a nanovector influences its interaction with a cell and determines the inter...
A major limitation to current treatment regimens for diseases is the inability to adequately deliver...
Protein-containing films and microspheres, based on poly(ethylene glycol)–poly(butylene terephthalat...