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2020-08-25Zeitschriftenartikel DOI: 10.3390/pharmaceutics12090805
Efficient Transfection of Large Plasmids Encoding HIV-1 into Human Cells - A High Potential Transfection System Based on a Peptide Mimicking Cationic Lipid
dc.contributor.authorJanich, Christopher
dc.contributor.authorIvanusic, Daniel
dc.contributor.authorGiselbrecht, Julia
dc.contributor.authorJanich, Elena
dc.contributor.authorPinnapireddy, Shashank Reddy
dc.contributor.authorHause, Gerd
dc.contributor.authorBakowsky, Udo
dc.contributor.authorLangner, Andreas
dc.contributor.authorWölk, Christian
dc.date.accessioned2026-09-28T11:26:38Z
dc.date.available2026-09-28T11:26:38Z
dc.date.issued2020-08-25none
dc.identifier.urihttp://edoc.rki.de/176904/13961
dc.description.abstractOne major disadvantage of nucleic acid delivery systems is the low transfection or transduction efficiency of large-sized plasmids into cells. In this communication, we demonstrate the efficient transfection of a 15.5 kb green fluorescent protein (GFP)-fused HIV-1 molecular clone with a nucleic acid delivery system prepared from the highly potent peptide-mimicking cationic lipid OH4 in a mixture with the phospholipid DOPE (co-lipid). For the transfection, liposomes were loaded using a large-sized plasmid (15.5 kb), which encodes a replication-competent HIV type 1 molecular clone that carries a Gag-internal green fluorescent protein (HIV-1 JR-FL Gag-iGFP). The particle size and charge of the generated nanocarriers with 15.5 kb were compared to those of a standardized 4.7 kb plasmid formulation. Stable, small-sized lipoplexes could be generated independently of the length of the used DNA. The transfer of fluorescently labeled pDNA-HIV1-Gag-iGFP in HEK293T cells was monitored using confocal laser scanning microscopy (cLSM). After efficient plasmid delivery, virus particles were detectable as budding structures on the plasma membrane. Moreover, we observed a randomized distribution of fluorescently labeled lipids over the plasma membrane. Obviously, a significant exchange of lipids between the drug delivery system and the cellular membranes occurs, which hints toward a fusion process. The mechanism of membrane fusion for the internalization of lipid-based drug delivery systems into cells is still a frequently discussed topic.eng
dc.language.isoengnone
dc.publisherRobert Koch-Institut
dc.rights(CC BY 3.0 DE) Namensnennung 3.0 Deutschlandger
dc.rights.urihttp://creativecommons.org/licenses/by/3.0/de/
dc.subjectgene therapyeng
dc.subjectcationic lipidseng
dc.subjectlarge plasmidseng
dc.subjecttransfectioneng
dc.subjectmembrane fusioneng
dc.subjectHIVeng
dc.subject.ddc610 Medizin und Gesundheitnone
dc.titleEfficient Transfection of Large Plasmids Encoding HIV-1 into Human Cells - A High Potential Transfection System Based on a Peptide Mimicking Cationic Lipidnone
dc.typearticle
dc.identifier.urnurn:nbn:de:0257-176904/13961-1
dc.identifier.doi10.3390/pharmaceutics12090805
dc.type.versionpublishedVersionnone
local.edoc.container-titlepharmaceuticsnone
local.edoc.container-issn1999-4923none
local.edoc.pages10none
local.edoc.type-nameZeitschriftenartikel
local.edoc.container-typeperiodical
local.edoc.container-type-nameZeitschrift
local.edoc.container-urlhttps://www.mdpi.com/journal/pharmaceuticsnone
local.edoc.container-publisher-nameMDPInone
local.edoc.container-volume12none
local.edoc.container-issue9none
local.edoc.container-reportyear2020none
dc.description.versionPeer Reviewednone

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