Literature DB >> 20640850

The role of electrophoresis in gene electrotransfer.

M Pavlin1, K Flisar, M Kanduser.   

Abstract

Gene electrotransfer is an established method for gene delivery which uses high-voltage pulses to increase the permeability of a cell membrane and enables transfer of genes. Poor plasmid mobility in tissues is one of the major barriers for the successful use of gene electrotransfer in gene therapy. Therefore, we analyzed the effect of electrophoresis on increasing gene electrotransfer efficiency using different combinations of high-voltage (HV) and low-voltage (LV) pulses in vitro on CHO cells. We designed a special prototype of electroporator, which enabled us to use only HV pulses or combinations of LV + HV and HV + LV pulses. We used optimal plasmid concentrations used in in vitro conditions as well as lower suboptimal concentrations in order to mimic in vivo conditions. Only for the lowest plasmid concentration did the electrophoretic force of the LV pulse added to the HV pulse increase the transfection efficiency compared to using only HV. The effect of the LV pulse was more pronounced for HV + LV, while for the reversed sequence, LV + HV, there was only a minor effect of the LV pulse. For the highest plasmid concentrations no added effect of LV pulses were observed. Our results suggest that there are different contributing effects of LV pulses: electrophoretically increased contact of DNA with the membrane and increased insertion of DNA into permeabilized cell membrane and/or translocation due to electrophoretic force, which appears to be the dominant effect.

Mesh:

Year:  2010        PMID: 20640850     DOI: 10.1007/s00232-010-9276-z

Source DB:  PubMed          Journal:  J Membr Biol        ISSN: 0022-2631            Impact factor:   1.843


  21 in total

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5.  Mechanisms involved in gene electrotransfer using high- and low-voltage pulses--an in vitro study.

Authors:  Masa Kanduser; Damijan Miklavcic; Mojca Pavlin
Journal:  Bioelectrochemistry       Date:  2008-09-21       Impact factor: 5.373

6.  Control by pulse parameters of electric field-mediated gene transfer in mammalian cells.

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  13 in total

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2.  Analysis and comparison of electrical pulse parameters for gene electrotransfer of two different cell lines.

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3.  Use of collagen gel as a three-dimensional in vitro model to study electropermeabilization and gene electrotransfer.

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5.  Comparison of flow cytometry, fluorescence microscopy and spectrofluorometry for analysis of gene electrotransfer efficiency.

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6.  Modelling FUS Mislocalisation in an In Vitro Model of Innervated Human Muscle.

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7.  Electrotransfection and lipofection show comparable efficiency for in vitro gene delivery of primary human myoblasts.

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8.  Numerical optimization of gene electrotransfer into muscle tissue.

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