Self-assembled micelles of amphiphilic block copolymers (ABPs) with stimuli-responsive degradation (SRD) properties have a great promise as nanotherapeutics exhibiting enhanced release of encapsulated therapeutics into targeted cells. Here, thiol-responsive degradable micelles based on a new ABP consisting of a pendant disulfide-labeled methacrylate polymer block (PHMssEt) and a hydrophilic poly(ethylene oxide) (PEO) block were investigated as effective intracellular nanocarriers of anticancer drugs. In response to glutathione (GSH) as a cellular trigger, the cleavage of pendant disulfide linkages in hydrophobic PHMssEt blocks of micellar cores caused the destabilization of self-assembled micelles due to change in hydrophobic/hydrophilic b...
The accumulation of nanotechnology-based drugs has been realized in various ways. However, the conce...
Bioreducible polymeric nanocarriers bearing disulfide bonds have been widely used for intracellular ...
To minimize the premature drug release of nanocarriers, we have developed chemically cross-linked bi...
The past couple of years have witnessed a tremendous progress in the development of glutathione-resp...
Reduction-responsive degradation based on disulfide-thiol chemistry is highly desirable in the devel...
Design and development of smart nano-sized delivery devices for controlled drug release in response ...
The efficiency of chemotherapeutic drugs has been drastically compromised by their undesired side ef...
This article presents a novel glutathione (GSH)-responsive poly(ethylene glycol)-<i>b</i>-polycarbo...
The ability of polymeric micelles to self-assemble into nanosized particles has created interest in ...
The ability of polymeric micelles to self-assemble into nanosized particles has created interest in ...
Gene therapy holds a great promise in the treatment of acquired genetic disorders such as cancer bec...
Current drug delivery systems are hampered by poor delivery to tumors, in part reflecting poor encap...
Novel reduction-responsive disulfide core-crosslinked micelles based on amphiphilic starch-graft-pol...
Current drug delivery systems are hampered by poor delivery to tumors, in part reflecting poor encap...
New thiol-responsive nanocarriers of amphiphilic block copolymers consisting of a pendent disulfide-...
The accumulation of nanotechnology-based drugs has been realized in various ways. However, the conce...
Bioreducible polymeric nanocarriers bearing disulfide bonds have been widely used for intracellular ...
To minimize the premature drug release of nanocarriers, we have developed chemically cross-linked bi...
The past couple of years have witnessed a tremendous progress in the development of glutathione-resp...
Reduction-responsive degradation based on disulfide-thiol chemistry is highly desirable in the devel...
Design and development of smart nano-sized delivery devices for controlled drug release in response ...
The efficiency of chemotherapeutic drugs has been drastically compromised by their undesired side ef...
This article presents a novel glutathione (GSH)-responsive poly(ethylene glycol)-<i>b</i>-polycarbo...
The ability of polymeric micelles to self-assemble into nanosized particles has created interest in ...
The ability of polymeric micelles to self-assemble into nanosized particles has created interest in ...
Gene therapy holds a great promise in the treatment of acquired genetic disorders such as cancer bec...
Current drug delivery systems are hampered by poor delivery to tumors, in part reflecting poor encap...
Novel reduction-responsive disulfide core-crosslinked micelles based on amphiphilic starch-graft-pol...
Current drug delivery systems are hampered by poor delivery to tumors, in part reflecting poor encap...
New thiol-responsive nanocarriers of amphiphilic block copolymers consisting of a pendent disulfide-...
The accumulation of nanotechnology-based drugs has been realized in various ways. However, the conce...
Bioreducible polymeric nanocarriers bearing disulfide bonds have been widely used for intracellular ...
To minimize the premature drug release of nanocarriers, we have developed chemically cross-linked bi...