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dc.contributor.authorDelgado San Vicente, Diego
dc.contributor.authorDel Pozo Rodríguez, Ana ORCID
dc.contributor.authorSolinís Aspiazu, María Ángeles ORCID
dc.contributor.authorAvilés Triqueros, Marcelino
dc.contributor.authorWeber, Bernhard H.F.
dc.contributor.authorFernández, Eduardo
dc.contributor.authorRodríguez Gascón, Alicia
dc.date.accessioned2013-11-06T12:06:56Z
dc.date.available2013-11-06T12:06:56Z
dc.date.issued2012-04
dc.identifier.citationHuman gene therapy 23 : 345–355 (2012)es
dc.identifier.issn1043-0342
dc.identifier.issn1557-7422
dc.identifier.urihttp://hdl.handle.net/10810/10849
dc.descriptionThis is a copy of an article published in the Human gene therapy © 2012 copyright Mary Ann Liebert, Inc.; Human gene therapy is available online at: http://online.liebertpub.com.en
dc.description.abstract[EN]The goal of the present study was to analyze the potential application of nonviral vectors based on solid lipid nanoparticles (SLN) for the treatment of ocular diseases by gene therapy, specifically X-linked juvenile retinoschisis (XLRS). Vectors were prepared with SLN, dextran, protamine, and a plasmid (pCMS-EGFP or pCEP4-RS1). Formulations were characterized and the in vitro transfection capacity as well as the cellular uptake and the intracellular trafficking were studied in ARPE-19 cells. Formulations were also tested in vivo in Wistar rat eyes, and the efficacy was studied by monitoring the expression of enhanced green fluorescent protein (EGFP)after intravitreal, subretinal, and topical administration. The presence of dextran and protamine in the SLN improved greatly the expression of retinoschisin and EGFP in ARPE-19 cells. The nuclear localization signals of protamine, its ability to protect the DNA, and a shift in the entry mechanism from caveola-mediated to clathrinmediated endocytosis promoted by the dextran, justify the increase in transfection. After ocular administration of the dextran–protamine–DNA–SLN complex to rat eyes, we detected the expression of EGFP in various types of cells depending on the administration route. Our vectors were also able to transfect corneal cells after topical application. We have demonstrated the potential usefulness of our nonviral vectors loaded with XLRS1 plasmid and provided evidence for their potential application for the management or treatment of degenerative retinal disorders as well as ocular surface diseases.en
dc.description.sponsorshipBasque Government’s Department of Education, Universities and Investigation (IT-341-10)University of the Basque Country UPV/EHU (PIFA01/20067008)Spanish Ministry of Education and Science (SAF2010-19862, SAF2008-03694)ONCE (National Organization of the Spanish Blind)Bidons Egara Research Chair in Retinosis PigmentosaDeutsche Forschungsgemeinschaft (DFG) (WE1259/12-4)es
dc.language.isoenges
dc.publisherMary Ann Liebert, Inc.es
dc.rightsinfo:eu-repo/semantics/openAccesses
dc.subjectgene therapyen
dc.subjectnon-viral vectorsen
dc.subjectsolid lipid nanoparticlesen
dc.subjectocular diseasesen
dc.subjectin vivo transfectionen
dc.subjectX-linked juvenile retinoschisisen
dc.subjectterapia génicaes
dc.subjectvectores no viraleses
dc.subjectnanopartículas sólidas lipídicases
dc.subjectenfermedades oculareses
dc.subjectretinosquisis juvenil ligada al cromosoma Xes
dc.subjecttransfección in vivoes
dc.subjectretinal dystrophieses
dc.subjectdistrofias de retinaes
dc.titleDextran and protamine-based solid lipid nanoparticles as potential vectors for the treatment of X-linked juvenile retinoschisisen
dc.typeinfo:eu-repo/semantics/articlees
dc.rights.holder© Mary Ann Liebert, Inc.es
dc.relation.publisherversionhttp://online.liebertpub.com/doi/abs/10.1089/hum.2011.115es
dc.identifier.doi10.1089/hum.2011.115
dc.departamentoesFarmacia y ciencias de los alimentoses_ES
dc.departamentoeuFarmazia eta elikagaien zientziakes_ES
dc.subject.categoriaGENETICS AND HEREDITY
dc.subject.categoriaMOLECULAR MEDICINE
dc.subject.categoriaMOLECULAR BIOLOGY


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