Biodegradable nanoarchitectures, with well-defined morphological features, are of great importance for nanomedical research; however, understanding (and thereby engineering) their formation is a substantial challenge. Herein, we uncover the supramolecular potential of PEG-PDLLA copolymers by exploring the physicochemical determinants that result in the transformation of spherical polymersomes into stomatocytes. To this end, we have engineered blended polymersomes (comprising copolymers with varying lengths of PEG), which undergo solvent-dependent reorganization inducing negative spontaneous membrane curvature. Under conditions of anisotropic solvent composition across the PDLLA membrane, facilitated by the dialysis methodology, we demonstra...
International audiencePolymer vesicles, also named polymersomes, are valuable candidates for drug de...
Bowl-shaped biodegradable polymersomes, or stomatocytes, have much potential as drug delivery system...
Polymersomes assembled from amphiphilic block copolymers containing a glassy hydrophobic segment can...
Biodegradable nanoarchitectures, with well-defined morphological features, are of great importance f...
Biodegradable nanoarchitectures, with well-defined morphological features, are of great importance f...
Polymeric vesicles (polymersomes) are an important class of nanoparticles for various biomedical app...
Polymersomes are robust, versatile nanostructures that can be tailored by varying the chemical struc...
\u3cp\u3eWe report here a controllable shape transformation of polymer vesicles (polymersomes) const...
We report here a controllable shape transformation of polymer vesicles (polymersomes) constructed fr...
Accurate control of the shape transformation of polymersome is an important and interesting challeng...
Polymersomes are robust, versatile nanostructures that can be tailored by varying the chemical struc...
Polymersomes are bilayer vesicles, self-assembled from amphiphilic block copolymers. They are versat...
Two examples of self-assembled polymer systems of which the properties or functions can be tuned by ...
International audiencePolymer vesicles, also named polymersomes, are valuable candidates for drug de...
Bowl-shaped biodegradable polymersomes, or stomatocytes, have much potential as drug delivery system...
Polymersomes assembled from amphiphilic block copolymers containing a glassy hydrophobic segment can...
Biodegradable nanoarchitectures, with well-defined morphological features, are of great importance f...
Biodegradable nanoarchitectures, with well-defined morphological features, are of great importance f...
Polymeric vesicles (polymersomes) are an important class of nanoparticles for various biomedical app...
Polymersomes are robust, versatile nanostructures that can be tailored by varying the chemical struc...
\u3cp\u3eWe report here a controllable shape transformation of polymer vesicles (polymersomes) const...
We report here a controllable shape transformation of polymer vesicles (polymersomes) constructed fr...
Accurate control of the shape transformation of polymersome is an important and interesting challeng...
Polymersomes are robust, versatile nanostructures that can be tailored by varying the chemical struc...
Polymersomes are bilayer vesicles, self-assembled from amphiphilic block copolymers. They are versat...
Two examples of self-assembled polymer systems of which the properties or functions can be tuned by ...
International audiencePolymer vesicles, also named polymersomes, are valuable candidates for drug de...
Bowl-shaped biodegradable polymersomes, or stomatocytes, have much potential as drug delivery system...
Polymersomes assembled from amphiphilic block copolymers containing a glassy hydrophobic segment can...