Cationic siRNAs provide carrier-free gene silencing in animal cells
Marc Nothisen1, Mitsuharu Kotera, Emilie Voirin
1Laboratoire de Chimie Genetique, Universite de Strasbourg and C.N.R.S., Faculte de Pharmacie, 67401 Illkirch, France.
Abstract:
siRNA-mediated gene silencing requires intracellular delivery of the nucleic acid. We have developed a carrierless molecular approach that follows the same cell entry route as cationic supramolecular complexes, yet should avoid the extracellular barriers encountered by nanoparticles. Cationic oligospermine-oligonucleotide conjugates (ZNAs, for Zip Nucleic Acids) were synthesized stepwise on an oligonucleotide synthesizer using a DMT-spermine phosphoramidite derivative. They were shown to enter cells and have access to the cytoplasm, provided their formal charge ratio N/P was >1.5. Cationic siRNAs that fulfilled this condition were shown to achieve selective inhibition of luciferase gene expression in the submicromolar concentration range in constitutively luciferase-expressing cells.
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