Transferring nucleic acids into mammalian cells heavily influences life science for decades. While first applications mainly dealt with DNA transfer for various purposes as e.g., plasmid encoded protein expression or generation of mutant strains, subsequent applications additionally transferred RNA molecules of mainly small lengths for specific knockdown (RNAi) or site-specific genome modification (gRNA). Significant improvements in full length mRNA generation and extension of mRNA lifetimes additionally allows their use for transient expression in latest times. For all of these types of nucleic acids the most common cell incorporation method is based on complexation and subsequent endosomal uptake. This so-called lipofection can be used th...
RNA Interference (RNAi) has brought revolutionary transformations in cancer management in the past t...
RNA interference (RNAi) is a method that can be used to treat various medical conditions. This metho...
Cytosolic delivery remains a major bottleneck for siRNA therapeutics. To facilitate delivery, siRNAs...
The efficient and biocompatible transfer of nucleic acids into mammalian cells for research applicat...
Highly efficient, biocompatible, and fast nucleic acid delivery methods are essential for biomedical...
Nucleic acids have clear clinical potential for gene therapy. Plasmid DNA (pDNA) was the first nucle...
In recent years RNA therapeutics have emerged as a new class of highly promising therapeutics. These...
Cationic lipid- and polymer-based nanodevices are considered appropriate alternatives for virus-base...
Cationic lipid- and polymer-based nanodevices are considered appropriate alternatives for virus-base...
Nucleic acid-based drugs offer a potentially effective tool for treatment of a variety of diseases, ...
Recent research has focused on exploiting the small interfering ribonucleic acid (siRNA) molecule in...
Ionizable lipid nanoparticles (LNPs) are the most clinically advanced nano-delivery system for thera...
International audienceRNA interference discovery has opened up new fields of study, including the un...
The field of RNA therapeutics is currently undergoing both transformation and expansion. Specificall...
RNA Interference (RNAi) has brought revolutionary transformations in cancer management in the past t...
RNA Interference (RNAi) has brought revolutionary transformations in cancer management in the past t...
RNA interference (RNAi) is a method that can be used to treat various medical conditions. This metho...
Cytosolic delivery remains a major bottleneck for siRNA therapeutics. To facilitate delivery, siRNAs...
The efficient and biocompatible transfer of nucleic acids into mammalian cells for research applicat...
Highly efficient, biocompatible, and fast nucleic acid delivery methods are essential for biomedical...
Nucleic acids have clear clinical potential for gene therapy. Plasmid DNA (pDNA) was the first nucle...
In recent years RNA therapeutics have emerged as a new class of highly promising therapeutics. These...
Cationic lipid- and polymer-based nanodevices are considered appropriate alternatives for virus-base...
Cationic lipid- and polymer-based nanodevices are considered appropriate alternatives for virus-base...
Nucleic acid-based drugs offer a potentially effective tool for treatment of a variety of diseases, ...
Recent research has focused on exploiting the small interfering ribonucleic acid (siRNA) molecule in...
Ionizable lipid nanoparticles (LNPs) are the most clinically advanced nano-delivery system for thera...
International audienceRNA interference discovery has opened up new fields of study, including the un...
The field of RNA therapeutics is currently undergoing both transformation and expansion. Specificall...
RNA Interference (RNAi) has brought revolutionary transformations in cancer management in the past t...
RNA Interference (RNAi) has brought revolutionary transformations in cancer management in the past t...
RNA interference (RNAi) is a method that can be used to treat various medical conditions. This metho...
Cytosolic delivery remains a major bottleneck for siRNA therapeutics. To facilitate delivery, siRNAs...