Herein we report the potential of click chemistry-modified polypeptide-based block copolymers for the facile fabrication of pH-sensitive nanoscale drug delivery systems. PEG–polypeptide copolymers with pendant amine chains were synthesized by combining <i>N</i>-carboxyanhydride-based ring-opening polymerization with post-functionalization using azide–alkyne cycloaddition. The synthesized block copolymers contain a polypeptide block with amine-functional side groups and were found to self-assemble into stable polymersomes and disassemble in a pH-responsive manner under a range of biologically relevant conditions. The self-assembly of these block copolymers yields nanometer-scale vesicular structures that are able to encapsulate hydrophilic c...
In the last decades, amphiphilic self-assembling block copolymers have been studied as carriers for ...
Biodegradable poly(α-hydroxy acid) copolyesters consisting of benzyl-protected glutamic acid and car...
The potential of self-assembled nanoparticles (NPs) containing the fine tunable pH-responsive proper...
Herein we report the potential of click chemistry-modified polypeptide-based block copolymers for th...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
Over the last decade, polymer micelles and nanoparticles have attracted an increasing interest as ef...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
Over the last decade, polymer micelles and nanoparticles have attracted an increasing interest as ef...
<p>pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable c...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
In the last decades, amphiphilic self-assembling block copolymers have been studied as carriers for ...
Biodegradable poly(α-hydroxy acid) copolyesters consisting of benzyl-protected glutamic acid and car...
The potential of self-assembled nanoparticles (NPs) containing the fine tunable pH-responsive proper...
Herein we report the potential of click chemistry-modified polypeptide-based block copolymers for th...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
Over the last decade, polymer micelles and nanoparticles have attracted an increasing interest as ef...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
Over the last decade, polymer micelles and nanoparticles have attracted an increasing interest as ef...
<p>pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable c...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
pH-sensitive vesicles used as drug delivery systems (DDSs) are generally composed of protonable copo...
In the last decades, amphiphilic self-assembling block copolymers have been studied as carriers for ...
Biodegradable poly(α-hydroxy acid) copolyesters consisting of benzyl-protected glutamic acid and car...
The potential of self-assembled nanoparticles (NPs) containing the fine tunable pH-responsive proper...