Gene therapy holds immense potential as a future therapeutic strategy for the treatment of numerous genetic diseases which are incurable to date. Nevertheless, safe and efficient gene delivery remains the most challenging aspects of gene therapy. To overcome this difficulty a series of hexanoic acid (HA) and monomethoxy poly(ethylene glycol) (mPEG) double grafted chitosan-based (HPC) nanomicelles were developed as nonviral gene carrier. HPC polymers with various HA and mPEG substitution degrees were synthesized, and their chemical structures were confirmed by <sup>1</sup>H NMR spectroscopy. HPC nanomicelles exhibited excellent blood compatibility and cell viability, as demonstrated by in vitro hemolysis and MTT assay, respectively. The cat...
textOver the past several decades, gene therapy technologies have been developed for a diverse numbe...
The ability to specifically silence genes by RNA interference has an enormous potential for treating...
The low gene transfer efficiency of chitosan-DNA polyplexes is a consequence of their high stability...
To develop a safe, effective, and biocompatible gene delivery vector, a series of hydrophobic amino ...
Gene therapy offers the possibility to treat or even cure diseases originating from genetic defects ...
The aim of this study was to develop hepatocyte-targeting non-viral polymeric nono-carriers for gene...
AbstractThe aim of this study was to develop hepatocyte-targeting non-viral polymeric nono-carriers ...
Gene therapy has great potential in disease prevention and treatment. The purpose of the proposed re...
Among polymeric polycations, chitosan has emerged as a powerful carrier for gene delivery. Only a fe...
<p>The purpose of this work was to improve the functional properties of chitosan for gene transfer b...
Gene therapy is a new alternative treatment method that involves the internalization of deoxyribonuc...
Gene delivery has abundant potential applications both clinically and for fundamental science resear...
The aim of this study was to synthesize and characterize fatty acid-grafted-chitosan (fatty acid-<i>...
Chitosans have been proposed as alternative, biocompatible cationic polymers for nonviral gene deliv...
The low gene transfer efficiency of chitosan-DNA polyplexes is a consequence of their high stability...
textOver the past several decades, gene therapy technologies have been developed for a diverse numbe...
The ability to specifically silence genes by RNA interference has an enormous potential for treating...
The low gene transfer efficiency of chitosan-DNA polyplexes is a consequence of their high stability...
To develop a safe, effective, and biocompatible gene delivery vector, a series of hydrophobic amino ...
Gene therapy offers the possibility to treat or even cure diseases originating from genetic defects ...
The aim of this study was to develop hepatocyte-targeting non-viral polymeric nono-carriers for gene...
AbstractThe aim of this study was to develop hepatocyte-targeting non-viral polymeric nono-carriers ...
Gene therapy has great potential in disease prevention and treatment. The purpose of the proposed re...
Among polymeric polycations, chitosan has emerged as a powerful carrier for gene delivery. Only a fe...
<p>The purpose of this work was to improve the functional properties of chitosan for gene transfer b...
Gene therapy is a new alternative treatment method that involves the internalization of deoxyribonuc...
Gene delivery has abundant potential applications both clinically and for fundamental science resear...
The aim of this study was to synthesize and characterize fatty acid-grafted-chitosan (fatty acid-<i>...
Chitosans have been proposed as alternative, biocompatible cationic polymers for nonviral gene deliv...
The low gene transfer efficiency of chitosan-DNA polyplexes is a consequence of their high stability...
textOver the past several decades, gene therapy technologies have been developed for a diverse numbe...
The ability to specifically silence genes by RNA interference has an enormous potential for treating...
The low gene transfer efficiency of chitosan-DNA polyplexes is a consequence of their high stability...