A critical need still remains for effective delivery of RNA interference (RNAi) therapeutics to target tissues and cells. Self-assembled lipid- and polymer-based systems have been most extensively explored for transfection with small interfering RNA (siRNA) in liver and cancer therapies. Safety and compatibility of materials implemented in delivery systems must be ensured to maximize therapeutic indices. Hydrogel nanoparticles of defined dimensions and compositions, prepared via a particle molding process that is a unique off-shoot of soft lithography known as particle replication in nonwetting templates (PRINT), were explored in these studies as delivery vectors. Initially, siRNA was encapsulated in particles through electrostatic associat...
The development of controlled-release nanoparticle (NP) technologies has great potential to further ...
lt;pgt;In order to silence the expression levels of pathogenic genes, small interfering RNA (siRNA) ...
RNA interference (RNAi) certainly is a hot topic among the scientific community, judging by the broa...
A critical need still remains for effective delivery of RNA interference (RNAi) therapeutics to targ...
To achieve the great potential of siRNA based gene therapy, safe and efficient systemic delivery <i>...
Diseases and disorders may be treated through RNA interference (RNAi), a natural post-transcriptiona...
To achieve the great potential of siRNA based gene therapy, safe and efficient systemic delivery in ...
RNA-based therapeutics have shown tremendous promise in disease intervention at the genetic level, a...
Here, we describe a concept for localized and long-term delivery of short interfering RNA (siRNA) us...
RNA interference (RNAi) is receiving increasing attention as a form of gene regulation able to tempo...
Nanometer-size gel particles, or nanogels, have potential for delivering therapeutic macromolecules....
RNA interference (RNAi) is a powerful tool to treat diseases and elucidate target gene function. Pri...
One of the challenges for the clinical translation of RNA interference (RNAi)-based therapies concer...
The local controlled release of siRNA is an attractive and rational strategy to enhance and extend t...
Nanoparticles represent particularly attractive delivery systems for small interfering RNA (siRNA) a...
The development of controlled-release nanoparticle (NP) technologies has great potential to further ...
lt;pgt;In order to silence the expression levels of pathogenic genes, small interfering RNA (siRNA) ...
RNA interference (RNAi) certainly is a hot topic among the scientific community, judging by the broa...
A critical need still remains for effective delivery of RNA interference (RNAi) therapeutics to targ...
To achieve the great potential of siRNA based gene therapy, safe and efficient systemic delivery <i>...
Diseases and disorders may be treated through RNA interference (RNAi), a natural post-transcriptiona...
To achieve the great potential of siRNA based gene therapy, safe and efficient systemic delivery in ...
RNA-based therapeutics have shown tremendous promise in disease intervention at the genetic level, a...
Here, we describe a concept for localized and long-term delivery of short interfering RNA (siRNA) us...
RNA interference (RNAi) is receiving increasing attention as a form of gene regulation able to tempo...
Nanometer-size gel particles, or nanogels, have potential for delivering therapeutic macromolecules....
RNA interference (RNAi) is a powerful tool to treat diseases and elucidate target gene function. Pri...
One of the challenges for the clinical translation of RNA interference (RNAi)-based therapies concer...
The local controlled release of siRNA is an attractive and rational strategy to enhance and extend t...
Nanoparticles represent particularly attractive delivery systems for small interfering RNA (siRNA) a...
The development of controlled-release nanoparticle (NP) technologies has great potential to further ...
lt;pgt;In order to silence the expression levels of pathogenic genes, small interfering RNA (siRNA) ...
RNA interference (RNAi) certainly is a hot topic among the scientific community, judging by the broa...