Stearylated octaarginine and artificial virus-like particles for transfection of siRNA into primary rat neurons
- Lars Tönges1,4,
- Paul Lingor1,3,4,
- Roman Egle2,
- Gunnar P.H. Dietz1,3,
- Alfred Fahr2, and
- Mathias Bähr1,3
- 1Department of Neurology, Georg-August-University Göttingen, Faculty of Medicine, Waldweg 33, 37073 Göttingen, Germany
- 2Department of Pharmaceutical Technology, Friedrich-Schiller-University Jena, Lessingstr. 8, 07743 Jena, Germany
- 3DFG-Research Center for Molecular Physiology of the Brain (CMPB), Göttingen, Germany
Abstract
RNA interference (RNAi) provides a powerful experimental tool for sequence-specific gene silencing, allowing efficient analysis of gene function in a multitude of cell types. However, application of RNAi in primary mammalian neurons has been limited by low-transfection efficiency and considerable toxicity of conventional transfection methods. In this study, we evaluated a peptide-mediated and a polymer/lipid-based cellular delivery method for siRNA into rat primary neurons and compared the results with a commonly used liposomal transfection reagent. Stearylated octaarginine (Stearyl-R8) was used as polypeptide and artificial virus-like particles (AVPs) were used as a combined liposomal-polymeric vector, since both reagents have been previously shown to successfully transfect DNA into cell lines. Stearyl-R8 and AVPs both promoted siRNA transfection into primary hippocampal neurons via the endosomal pathway. SiRNA-mediated gene silencing could be effectively induced in primary neuron cultures. In comparison with the commonly used cationic liposome transfection agent, both novel reagents were less detrimental to cell metabolic activity. We conclude that these novel transfection methods yield performances comparable to cationic liposome-mediated transfection for siRNA, while being less cytotoxic in primary neurons. Stearyl-R8 and AVPs may therefore represent novel and more cost-efficient alternatives to conventional siRNA-transfection reagents.
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Footnotes
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↵4 These authors contributed equally to this work.
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Reprint requests to: Paul Lingor, Department of Neurology, Georg-August-University Göttingen, Faculty of Medicine, S2-Laboratory, Waldweg 33, 37073 Göttingen, Germany; e-mail: plingor{at}gwdg.de; fax: 49-551-39-8405.
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Article published online ahead of print. Article and publication date are at http://www.rnajournal.org/cgi/doi/10.1261/rna.2252206.
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- Received October 5, 2005.
- Accepted March 27, 2006.
- Copyright © 2006 RNA Society











