Literature DB >> 10986560

Ocular cell transfection with the human basic fibroblast growth factor gene delays photoreceptor cell degeneration in RCS rats.

M Neuner-Jehle1, L V Berghe, S Bonnel, Y Uteza, F Benmeziane, J S Rouillot, D Marchant, A Kobetz, J L Dufier, M Menasche, M Abitbol.   

Abstract

Based on the K8/JTS-1-mediated transfection technique, we developed an in vivo protocol for an efficient transfer of plasmid DNA to ocular cells. As determined with condensed plasmids containing reporter genes for either beta-galactosidase (pcDNA-lacZ) or enhanced green fluorescent protein (pREP-EGFP), the immortalized human retinal epithelial cells RPE D407 and human embryonic kidney 293 cells can be transfected with typical efficiencies of 11 and 19%, respectively. Unlike 293 cells, RPE D407 cells had a reduced viability on transfection with both plasmids. In vivo, subretinal injections of DNA-K8/JTS-1 complexes revealed reporter gene expression in choroidal and RPE cells of normal pink-eyed Royal College of Surgeons (RCS) rats. The validity of this transfection technique in terms of retinal cell survival in RCS rats was then examined by using pREP-hFGF2 plasmid, which encodes the human basic fibroblast growth factor isoforms (hFGF2). Subretinal injection of pREP-hFGF2-K8/JTS-1 complexes into 3-week-old dystrophic RCS rat eyes reveals a delayed photoreceptor cell degeneration 60 days postinjection. In this case, the average analyzed field points with delayed cell dystrophy represent 14 to 17% of the retinal surface as compared with 2.6 and 4% in pREP5beta and vehicle-injected eyes, respectively. Peptide-mediated in oculo transfection thus appears to be a promising technique for the treatment of retinal cell and photoreceptor degenerations.

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Year:  2000        PMID: 10986560     DOI: 10.1089/10430340050129495

Source DB:  PubMed          Journal:  Hum Gene Ther        ISSN: 1043-0342            Impact factor:   5.695


  12 in total

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Authors:  Ke Jiang; Katherine L Wright; Ping Zhu; Michael J Szego; Alexa N Bramall; William W Hauswirth; Qiuhong Li; Sean E Egan; Roderick R McInnes
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5.  A poly(ethylene) glycolylated peptide for ocular delivery compacts DNA into nanoparticles for gene delivery to post-mitotic tissues in vivo.

Authors:  Sarah Parker Read; Siobhan M Cashman; Rajendra Kumar-Singh
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7.  Systemic immunotherapy delays photoreceptor cell loss and prevents vascular pathology in Royal College of Surgeons rats.

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8.  Nano-vectors for the Ocular Delivery of Nucleic Acid-based Therapeutics.

Authors:  R K Khar; G K Jain; M H Warsi; N Mallick; S Akhter; S A Pathan; F J Ahmad
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9.  Subretinal electrical stimulation preserves inner retinal function in RCS rat retina.

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Journal:  Mol Vis       Date:  2013-05-06       Impact factor: 2.367

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Authors:  Alexa N Bramall; Michael J Szego; Laura R Pacione; Inik Chang; Eduardo Diez; Pedro D'Orleans-Juste; Duncan J Stewart; William W Hauswirth; Masashi Yanagisawa; Roderick R McInnes
Journal:  PLoS One       Date:  2013-02-28       Impact factor: 3.240

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