4.8 Article

Sustained delivery of siRNAs targeting viral infection by cell-degradable multilayered polyelectrolyte films

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.0800156105

关键词

RNAi; therapy; hepatitis C virus; hepatocyte; liver

资金

  1. European Union [LSHM-CT-2004-503359, ANR-05-CEXC-008, ANRS-06221]
  2. Canceropole Grand Est-Fond National pour la Sante [ACI 2004]
  3. CONECTUS, Louis Pasteur University, Strasbourg

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Gene silencing by RNA interference (RNAi) has been shown to represent a recently discovered approach for the treatment of human diseases, including viral infection. A major limitation for the success of therapeutic strategies based on RNAi has been the delivery and shortlasting action of synthetic RNA. Multilayered polyelectrolyte films (MPFs), consisting of alternate layer-by-layer deposition of polycations and polyanions, have been shown to represent an original approach for the efficient delivery of DNA and proteins to target cells. Using hepatitis C virus infection (HCV) as a model, we demonstrate that sill targeting the viral genome are efficiently delivered by MPFs. This delivery method resulted in a marked, dose-dependent, specific, and sustained inhibition of HCV replication and infection in hepatocyte-derived cells. Comparative analysis demonstrated that delivery of siRNAs by MPFs was more sustained and durable than siRNA delivery by standard methods, including electroporation or liposomes. The antiviral effect of siRNA-MPFs was reversed by a hyaluronidase inhibitor, suggesting that active degradation of MPFs by cellular enzymes is required for sill delivery. In conclusion, our results demonstrate that cell-degradable MPFs represent an efficient and simple approach for sustained siRNA delivery targeting viral infection. Moreover, this MPF-based delivery system may represent a promising previously undescribed perspective for the use of RNAi as a therapeutic strategy for human diseases.

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