A novel biodegradable pseudo-poly(aminoacid) copolymer (mPEG-HRSCP-mPEG) was produced via a mechanism of step polymerization through Cu(I)-catalyzed azide-alkyne cycloaddition (CuAAC) (click polymerization) using dialkyned-cystine and diazide monomers. The disulfide and hydroxyl groups were repeatedly arranged in the polymer backbone. The introduced hydroxyl groups could not only adjust the hydrophilicity of the amphiphilic polymer, but also improve the DOX loading efficiency and solubility. Compared with the unmodified one, the polymer containing hydroxyl groups has increased hydrophilicity with a larger critical aggregation concentration (CAC) value, lower water contact angle, higher drug loading content and drug loading efficiency. The p...
In this thesis, bioorthogonal chemistry was explored as a means of developing stimuli-responsive nan...
In this study, we designed, synthesized, and characterized a novel pH- and redox responsive nanopart...
Herein we report the potential of click chemistry-modified polypeptide-based block copolymers for th...
Novel intracellular pH, glutathione (GSH) and reactive oxygen species (ROS)-responsive nanoparticles...
Biodegradable polymers have emerged as highly effective drug delivery vehicles. We combine N-carboxy...
A series of disulfide-core-cross-linked poly(ethylene glycol)-poly(amino acid)s star copolymers were...
Amphiphilic copolymers with pendant functional groups in polyester segments are widely used in nanom...
In this study, we designed, synthesized, and characterized a novel pH- and redox responsive nanopart...
Pendent functionalization of biodegradable polymers provides unique importance in biological applica...
Diblock poly(hydroxy acid) copolymers are created by the sequential ring‐opening polymerization of l...
Design and development of smart nano-sized delivery devices for controlled drug release in response ...
Τhe synthesis of a series of novel hybrid block copolypeptides based on poly(ethylene oxide) (PEO), ...
Click chemistry has increasing applications of the development of polymer materials and modification...
Polymeric materials are excellent candidates for use as biomaterials. They are often employed as dru...
In this work, a method to prepare hybrid amphiphilic block copolymers consisting of biocompatible sy...
In this thesis, bioorthogonal chemistry was explored as a means of developing stimuli-responsive nan...
In this study, we designed, synthesized, and characterized a novel pH- and redox responsive nanopart...
Herein we report the potential of click chemistry-modified polypeptide-based block copolymers for th...
Novel intracellular pH, glutathione (GSH) and reactive oxygen species (ROS)-responsive nanoparticles...
Biodegradable polymers have emerged as highly effective drug delivery vehicles. We combine N-carboxy...
A series of disulfide-core-cross-linked poly(ethylene glycol)-poly(amino acid)s star copolymers were...
Amphiphilic copolymers with pendant functional groups in polyester segments are widely used in nanom...
In this study, we designed, synthesized, and characterized a novel pH- and redox responsive nanopart...
Pendent functionalization of biodegradable polymers provides unique importance in biological applica...
Diblock poly(hydroxy acid) copolymers are created by the sequential ring‐opening polymerization of l...
Design and development of smart nano-sized delivery devices for controlled drug release in response ...
Τhe synthesis of a series of novel hybrid block copolypeptides based on poly(ethylene oxide) (PEO), ...
Click chemistry has increasing applications of the development of polymer materials and modification...
Polymeric materials are excellent candidates for use as biomaterials. They are often employed as dru...
In this work, a method to prepare hybrid amphiphilic block copolymers consisting of biocompatible sy...
In this thesis, bioorthogonal chemistry was explored as a means of developing stimuli-responsive nan...
In this study, we designed, synthesized, and characterized a novel pH- and redox responsive nanopart...
Herein we report the potential of click chemistry-modified polypeptide-based block copolymers for th...