Self-assembly of amphiphilic block copolymers into polymersomes continues to be a hot topic in modern research on biomimetics. Their well-known and valued mechanical strength can be increased even further if they are cross-linked. These additional bonds prevent a collapse or disassembly of the polymersomes and open the way towards smart nanoreactors. A variety of chemistries have been applied to obtain the desired cross-linked polymersomes, and therefore, the chemical approaches performed over time will be highlighted in this mini-review. Due to the large number of studies, a selected set of photo-cross-linked and pH-sensitive polymersomes will be specifically highlighted. This system has proven to be a very potent candidate for the formati...
Biological membranes play an essential role in living organisms by providing stable and functional c...
Crosslinkable and pH-sensitive amphiphilic block copolymers are promising candidates to establish pH...
Chemistry plays a crucial role in creating synthetic analogues of biomacromolecular structures. Of p...
Two key concepts in living organisms are that biochemical reactions are sequestered into reaction co...
Macromolecular self-assembly is attracting increasing scientific interest in polymer science. One of...
As an inspiration from nature, polymeric vesicles can be formed from amphiphilic block-copolymers. T...
Enzyme loading of polymersomes requires permeability to enable them to interact with the external en...
Polymersomes are vesicular nanostructures enclosed by a bilayer-membrane self-assembled from amphiph...
Polymeric vesicles or polymersomes are one of the supramolecular entities at the leading edge of syn...
Reactions inside confined compartments at the nanoscale represent an essential step in the developme...
Biological systems exploit self-assembly to create complex structures whose arrangements are finely ...
In dilute aqueous solutions certain amphiphilic block copolymers self-assemble into vesicles that en...
Adaptive polymersome systems have gained much interest in a wide variety of research fields, ranging...
International audience"Polymersomes" are vesicular structures made from the self-assembly of block c...
Understanding the diffusion of nanoparticles through permeable membranes in cell mimics paves the wa...
Biological membranes play an essential role in living organisms by providing stable and functional c...
Crosslinkable and pH-sensitive amphiphilic block copolymers are promising candidates to establish pH...
Chemistry plays a crucial role in creating synthetic analogues of biomacromolecular structures. Of p...
Two key concepts in living organisms are that biochemical reactions are sequestered into reaction co...
Macromolecular self-assembly is attracting increasing scientific interest in polymer science. One of...
As an inspiration from nature, polymeric vesicles can be formed from amphiphilic block-copolymers. T...
Enzyme loading of polymersomes requires permeability to enable them to interact with the external en...
Polymersomes are vesicular nanostructures enclosed by a bilayer-membrane self-assembled from amphiph...
Polymeric vesicles or polymersomes are one of the supramolecular entities at the leading edge of syn...
Reactions inside confined compartments at the nanoscale represent an essential step in the developme...
Biological systems exploit self-assembly to create complex structures whose arrangements are finely ...
In dilute aqueous solutions certain amphiphilic block copolymers self-assemble into vesicles that en...
Adaptive polymersome systems have gained much interest in a wide variety of research fields, ranging...
International audience"Polymersomes" are vesicular structures made from the self-assembly of block c...
Understanding the diffusion of nanoparticles through permeable membranes in cell mimics paves the wa...
Biological membranes play an essential role in living organisms by providing stable and functional c...
Crosslinkable and pH-sensitive amphiphilic block copolymers are promising candidates to establish pH...
Chemistry plays a crucial role in creating synthetic analogues of biomacromolecular structures. Of p...