The encapsulation and selective delivery of therapeutic compounds within polymeric nanoparticles offers hope for the treatment of a variety of diseases. Traditional approaches to trigger selective cargo release typically rely on polymer degradation which is not always sensitive to the biological location of a material. In this report, we prepare nanoparticles from thermoresponsive polymers with a ‘solubility release catch’ at the chain-end. This release catch is exclusively activated in the presence of intracellular glutathione, triggering an ‘isothermal’ response and promoting a change in polymer solubility. This solubility switch leads to specific and rapid nanoparticle disassembly, release of encapsulated cargo and produces completely so...
Intracellular delivery of proteins is a promising strategy for regulating cellular behavior and ther...
Thermosensitive nanocarriers are increasingly used to allow time and site-specific drug release with...
Comb-like amphiphilic polymers were obtained by grafting long paraffinic chains on microbial poly(¿,...
Materials which respond to biological cues are the subject of intense research interest due to their...
Triggered-release of encapsulated therapeutics from nanoparticles without remote or environmental tr...
Triggered-release of encapsulated therapeutics from nanoparticles without remote or environmental tr...
© 2017 American Chemical Society. The ability to disrupt polymer assemblies in response to specific ...
The ability to disrupt polymer assemblies in response to specific stimuli provides the potential to ...
The accumulation of nanotechnology-based drugs has been realized in various ways. However, the conce...
The ability to disrupt polymer assemblies in response to specifi c stimuli provides the potential to...
Drug delivery can be achieved from biodegradable polymers either from bulk-erosion or surface-erosio...
The ability to trigger the degradation of polymeric nanoparticles (NPs) by a specific stimulus can p...
Proteins play a crucial role in life, taking part in all vital processes in the body. Intracellular ...
Azide-functionalized hyaluronic acid and disulfide dialkyne have been used for “click” reaction poly...
In the last few decades, polymeric nanoparticles have been emerged as a most promising and viable te...
Intracellular delivery of proteins is a promising strategy for regulating cellular behavior and ther...
Thermosensitive nanocarriers are increasingly used to allow time and site-specific drug release with...
Comb-like amphiphilic polymers were obtained by grafting long paraffinic chains on microbial poly(¿,...
Materials which respond to biological cues are the subject of intense research interest due to their...
Triggered-release of encapsulated therapeutics from nanoparticles without remote or environmental tr...
Triggered-release of encapsulated therapeutics from nanoparticles without remote or environmental tr...
© 2017 American Chemical Society. The ability to disrupt polymer assemblies in response to specific ...
The ability to disrupt polymer assemblies in response to specific stimuli provides the potential to ...
The accumulation of nanotechnology-based drugs has been realized in various ways. However, the conce...
The ability to disrupt polymer assemblies in response to specifi c stimuli provides the potential to...
Drug delivery can be achieved from biodegradable polymers either from bulk-erosion or surface-erosio...
The ability to trigger the degradation of polymeric nanoparticles (NPs) by a specific stimulus can p...
Proteins play a crucial role in life, taking part in all vital processes in the body. Intracellular ...
Azide-functionalized hyaluronic acid and disulfide dialkyne have been used for “click” reaction poly...
In the last few decades, polymeric nanoparticles have been emerged as a most promising and viable te...
Intracellular delivery of proteins is a promising strategy for regulating cellular behavior and ther...
Thermosensitive nanocarriers are increasingly used to allow time and site-specific drug release with...
Comb-like amphiphilic polymers were obtained by grafting long paraffinic chains on microbial poly(¿,...