The local controlled release of siRNA is an attractive and rational strategy to enhance and extend the effectiveness of gene therapy. Since naked and unmodified siRNA has a limited cell uptake and knockdown efficiency, the complexation of siRNA with non-viral carriers is often necessary for the delivery of bioactive RNA. We evaluated the performance of three different non-viral siRNA carriers, including DOTAP lipoplexes (DL), chitosan polyplexes (CP), and solid lipid complexes (SLC). The physicochemical properties of the siRNA-nanocarriers were characterized by dynamic light scattering and gel electrophoresis. After in vitro characterization, the carrier with the most appropriate properties was found to be the DL suspension, which was subse...
A critical need still remains for effective delivery of RNA interference (RNAi) therapeutics to targ...
With the continuous progress in research and clinical success, nucleic acid-based therapeutics are e...
The success of siRNA gene therapy requires the availability of safe and efficient delivery systems. ...
One of the challenges for the clinical translation of RNA interference (RNAi)-based therapies concer...
Gene therapy through the use of siRNA and a polymeric carrier are becoming an efficient therapeutic ...
A critical need still remains for effective delivery of RNA interference (RNAi) therapeutics to targ...
In recent year, researches in gene therapy have witnessed several potential therapeutic approaches b...
Regulation of gene expression using small interfering RNA (siRNA) is a promising strategy for resear...
RNA interference (RNAi) is an emerging technology in which the introduction of double-stranded RNA (...
A diverse range of viral and non-viral strategies has been developed more than a decade for a gene d...
The advancement in the biomedical arena witnessed various effective therapeutic agents being develop...
Cationic liposomes have been investigated as non-viral vectors for gene delivery for more than a dec...
Successful non-viral gene therapy is driven by the molecular makeup and architecture of the gene vec...
Here, we describe a concept for localized and long-term delivery of short interfering RNA (siRNA) us...
A critical need still remains for effective delivery of RNA interference (RNAi) therapeutics to targ...
With the continuous progress in research and clinical success, nucleic acid-based therapeutics are e...
The success of siRNA gene therapy requires the availability of safe and efficient delivery systems. ...
One of the challenges for the clinical translation of RNA interference (RNAi)-based therapies concer...
Gene therapy through the use of siRNA and a polymeric carrier are becoming an efficient therapeutic ...
A critical need still remains for effective delivery of RNA interference (RNAi) therapeutics to targ...
In recent year, researches in gene therapy have witnessed several potential therapeutic approaches b...
Regulation of gene expression using small interfering RNA (siRNA) is a promising strategy for resear...
RNA interference (RNAi) is an emerging technology in which the introduction of double-stranded RNA (...
A diverse range of viral and non-viral strategies has been developed more than a decade for a gene d...
The advancement in the biomedical arena witnessed various effective therapeutic agents being develop...
Cationic liposomes have been investigated as non-viral vectors for gene delivery for more than a dec...
Successful non-viral gene therapy is driven by the molecular makeup and architecture of the gene vec...
Here, we describe a concept for localized and long-term delivery of short interfering RNA (siRNA) us...
A critical need still remains for effective delivery of RNA interference (RNAi) therapeutics to targ...
With the continuous progress in research and clinical success, nucleic acid-based therapeutics are e...
The success of siRNA gene therapy requires the availability of safe and efficient delivery systems. ...