Literature DB >> 11313779

CL22 - a novel cationic peptide for efficient transfection of mammalian cells.

A M Haines1, A S Irvine, A Mountain, J Charlesworth, N A Farrow, R D Husain, H Hyde, H Ketteringham, R H McDermott, A F Mulcahy, T L Mustoe, S C Reid, M Rouquette, J C Shaw, D R Thatcher, J H Welsh, D E Williams, W Zauner, R O Phillips.   

Abstract

Condensing peptide-DNA complexes have great potential as nonviral agents for gene delivery. To date, however, such complexes have given transfection activities greatly inferior to adenovirus and somewhat inferior to cationic lipid-DNA complexes, even for cell lines and primary cells in vitro. We report here the identification of a novel condensing peptide, CL22, which forms DNA complexes that efficiently transfect many cell lines, as well as primary dendritic and endothelial cells. We report studies with sequence and structure variants that define some properties of the peptide that contribute to efficient transfection. We demonstrate that the superior transfection activity of CL22 compared with other DNA condensing peptides is conferred at a step after uptake of the complexes into cells. We show that CL22-DNA complexes have transfection activity that is at least equivalent to the best available nonviral agents.

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Year:  2001        PMID: 11313779     DOI: 10.1038/sj.gt.3301314

Source DB:  PubMed          Journal:  Gene Ther        ISSN: 0969-7128            Impact factor:   5.250


  8 in total

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Review 4.  Strategies on the nuclear-targeted delivery of genes.

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Journal:  J Drug Target       Date:  2013-08-22       Impact factor: 5.121

5.  Biosynthesis and characterization of a novel genetically engineered polymer for targeted gene transfer to cancer cells.

Authors:  Brenda F Canine; Yuhua Wang; Arash Hatefi
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6.  A designer biomimetic vector with a chimeric architecture for targeted gene transfer.

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7.  Gene delivery potential of biofunctional carbonate apatite nanoparticles in lungs.

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8.  Enhanced bone morphogenic protein adenoviral gene delivery to bone marrow stromal cells using magnetic nanoparticle.

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  8 in total

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