RNA interference (RNAi) requires the intracellular delivery of RNA molecules to initiate the neutralization of targeted mRNA molecules, inhibiting the expression or translation of the targeted gene. Current polymers and lipids that are used to deliver RNA molecules are generally required to be positively charged, to achieve complexation with RNA and the cellular internalization. However, positive surface charge has been implicated as the reason for toxicity in many of these systems. Herein, we report a novel strategy to generate noncationic RNA–polymer complexes for RNA delivery with low cytotoxicity. We use an in situ electrostatic complexation using a methylated pyridinium group, which is simultaneously removed during the RNA binding step...
The discovery of RNA interference (RNAi) and the subsequent demonstration that synthetic short inter...
Success of synthetic interfering nucleic acids (siRNAs)-based therapy relies almost exclusively on e...
Small interfering RNA silences specific genes by interfering with mRNA translation, and acts to modu...
We present a postfunctionalization strategy to formulate noncationic RNA–polymer complexes for RNA d...
This is the first demonstration of receptor-mediated delivery of mRNA and establishes a new approach...
Messenger RNA (mRNA) delivery strategies are required to protect biologically fragile mRNA from ribo...
Manipulating gene activity represents a promising approach for the treatment of cancer and other dis...
Messenger RNA (mRNA) is a biomolecule with a wide range of promising clinical applications. However,...
The process of RNA interference (RNAi) is a natural phenomenon posttranscriptionally controlling gen...
We developed binary and ternary complexes based on polymers and liposomes for safe and effective del...
The delivery of small interfering RNA (siRNA) remains a major hurdle for the clinical translation of...
Polyplex for mRNA delivery requires strong yet reversible association between mRNA and polycation fo...
Nucleic acid delivery has many applications in basic science, biotechnology, agriculture, and medici...
We developed a novel small interfering RNA (siRNA) delivery system using a ternary complex with poly...
RNA interference (RNAi) is a highly specific gene-silencing mechanism triggered by small interfering...
The discovery of RNA interference (RNAi) and the subsequent demonstration that synthetic short inter...
Success of synthetic interfering nucleic acids (siRNAs)-based therapy relies almost exclusively on e...
Small interfering RNA silences specific genes by interfering with mRNA translation, and acts to modu...
We present a postfunctionalization strategy to formulate noncationic RNA–polymer complexes for RNA d...
This is the first demonstration of receptor-mediated delivery of mRNA and establishes a new approach...
Messenger RNA (mRNA) delivery strategies are required to protect biologically fragile mRNA from ribo...
Manipulating gene activity represents a promising approach for the treatment of cancer and other dis...
Messenger RNA (mRNA) is a biomolecule with a wide range of promising clinical applications. However,...
The process of RNA interference (RNAi) is a natural phenomenon posttranscriptionally controlling gen...
We developed binary and ternary complexes based on polymers and liposomes for safe and effective del...
The delivery of small interfering RNA (siRNA) remains a major hurdle for the clinical translation of...
Polyplex for mRNA delivery requires strong yet reversible association between mRNA and polycation fo...
Nucleic acid delivery has many applications in basic science, biotechnology, agriculture, and medici...
We developed a novel small interfering RNA (siRNA) delivery system using a ternary complex with poly...
RNA interference (RNAi) is a highly specific gene-silencing mechanism triggered by small interfering...
The discovery of RNA interference (RNAi) and the subsequent demonstration that synthetic short inter...
Success of synthetic interfering nucleic acids (siRNAs)-based therapy relies almost exclusively on e...
Small interfering RNA silences specific genes by interfering with mRNA translation, and acts to modu...