A. Reichmuth, M. Oberli, A. Jaklenec, R. Langer, D. Blankschtein
2016.4.14Therapeutic Delivery
tlooto Summary
Among potential nonviral vectors, lipid nanoparticles are particularly promising, and can be synthesized with relative ease in a scalable manner, protect the mRNA against degradation, facilitate endosomal escape, and as needed, can be codelivered with adjuvants.
Abstract
mRNA vaccines elicit a potent immune response including antibodies and cytotoxic T cells. mRNA vaccines are currently evaluated in clinical trials for cancer immunotherapy applications, but also have great potential as prophylactic vaccines. Efficient delivery of mRNA vaccines will be key for their success and translation to the clinic. Among potential nonviral vectors, lipid nanoparticles are particularly promising. Indeed, lipid nanoparticles can be synthesized with relative ease in a scalable manner, protect the mRNA against degradation, facilitate endosomal escape, can be targeted to the desired cell type by surface decoration with ligands, and as needed, can be codelivered with adjuvants.
Citation format
REICHMUTH, A., et al. Mrna vaccine delivery using lipid nanoparticles. Therapeutic Delivery, 2016, 7 5: 319–34.