Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5906201 | Gene | 2013 | 9 Pages |
Abstract
DNA complexes made with cationic polymers (polyplexes) developed as nonviral vectors for gene therapy must be enabled to cross through vascular endothelium to transfect underlying tissues upon their administration in the blood circulation. Here, we evaluated the transendothelial passage (TEP) of DNA complexes made with histidinylated linear polyethylenimine (His-lPEI) or linear polyethylenimine (lPEI). In vitro studies were performed by using established transwell lung and skeletal muscle vascular endothelial barriers. The models were composed of a monolayer of human lung microvascular endothelial (HMVEC-L) cells and mouse cardiac endothelial (MCEC) cells formed on a PET insert and immortalized human tracheal epithelial (ΣCFTE29o-) cells and mouse myoblasts (C2C12) as target cells cultured in the lower chamber, respectively. When the vascular endothelium monolayer was established and characterized, the transfection efficiency of target (ΣCFTE29o- and C2C12) cells with plasmid DNA encoding luciferase was used to evaluate TEP of polyplexes. The luciferase activities with His-lPEI and lPEI polyplexes compared to those obtained in the absence of endothelial cell monolayer were 6.5% and 4.3% into ΣCFTE29o- cells, and 18.5% and 0.23% into C2C12 cells, respectively. The estimated rate for His-lPEI polyplexes was 0.135 μg/cm2.h and 0.385 μg/cm2.h through the HMVEC-L and MCEC monolayers, respectively. These results indicate that His-lPEI polyplexes can pass through the lung and skeletal muscle vascular endothelium and can transfect underlying cells.
Keywords
Endothelial Basal Medium-2IL-1βBCATEERhEGFpolyplexesHMVEC-LDTTZO-1EBM-2HEPESFITCRLUlPEIFBSC2C12TEPPBSpDNA3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide4-(2-hydroxyethyl)-1-piperazineethanesulfonic acidMTTEDTAEthylenediaminetetraacetic acidVascular endotheliuminterleukin 1 βNon-viral vectorbicinchoninic acidDNA transfectiontumour necrosis factor-alphadithiothreitolfoetal bovine serumEndothelial cellsHuman lung microvascular endothelial cellsHuman epidermal growth factorVascular endothelial growth factorVascular Endothelial Growth Factor (VEGF)TNF-αphosphate buffer salinetransendothelial electrical resistanceZonula occludens-1relative light unitPETPlasmid DNAPolyethylene terephtalatelinear polyethylenimineCationic polymer
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Authors
Jean-Pierre Gomez, Chantal Pichon, Patrick Midoux,