Literature DB >> 9405626

Virus-sized self-assembling lamellar complexes between plasmid DNA and cationic micelles promote gene transfer.

B Pitard1, O Aguerre, M Airiau, A M Lachagès, T Boukhnikachvili, G Byk, C Dubertret, C Herviou, D Scherman, J F Mayaux, J Crouzet.   

Abstract

Gene therapy is based on the vectorization of genes to target cells and their subsequent expression. Cationic amphiphile-mediated delivery of plasmid DNA is the nonviral gene transfer method most often used. We examined the supramolecular structure of lipopolyamine/plasmid DNA complexes under various condensing conditions. Plasmid DNA complexation with lipopolyamine micelles whose mean diameter was 5 nm revealed three domains, depending on the lipopolyamine/plasmid DNA ratio. These domains respectively corresponded to negatively, neutrally, and positively charged complexes. Transmission electron microscopy and x-ray scattering experiments on complexes originating from these three domains showed that although their morphology depends on the lipopolyamine/plasmid DNA ratio, their particle structure consists of ordered domains characterized by even spacing of 80 A, irrespective of the lipid/DNA ratio. The most active lipopolyamine/DNA complexes for gene transfer were positively charged. They were characterized by fully condensed DNA inside spherical particles (diameter: 50 nm) sandwiched between lipid bilayers. These results show that supercoiled plasmid DNA is able to transform lipopolyamine micelles into a supramolecular organization characterized by ordered lamellar domains.

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Year:  1997        PMID: 9405626      PMCID: PMC25002          DOI: 10.1073/pnas.94.26.14412

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  17 in total

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Review 5.  Cryo-electron microscopy of vitrified specimens.

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  25 in total

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Review 9.  Nature as a source of inspiration for cationic lipid synthesis.

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10.  Structural analysis of DNA complexation with cationic lipids.

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