Literature DB >> 20623115

Influence of plasmid concentration on DNA electrotransfer in vitro using high-voltage and low-voltage pulses.

Karolina Cepurniene1, Paulius Ruzgys, Rimantas Treinys, Ingrida Satkauskiene, Saulius Satkauskas.   

Abstract

DNA electrotransfer in vivo for gene therapy is a promising method. For further clinical developments, the efficiency of the method should be increased. It has been shown previously that high efficiency of gene electrotransfer in vivo can be achieved using high-voltage (HV) and low-voltage (LV) pulses. In this study we evaluated whether HV and LV pulses could be optimized in vitro for efficient DNA electrotransfer. Experiments were performed using Chinese hamster ovary (CHO) cells. To evaluate the efficiency of DNA electrotransfer, two different plasmids coding for GFP and luciferase were used. For DNA electrotransfer experiments 50 microl of CHO cell suspension containing 100, 10 or 1 microg/ml of the plasmid were placed between plate electrodes and subjected to various combinations of HV and LV pulses. The results showed that at 100 microg/ml plasmid concentration LV pulse delivered after HV pulse increased neither the percentage of transfected cells nor the total transfection efficiency (luciferase activity). The contribution of the LV pulse was evident only at reduced concentration (10 and 1 microg/ml) of the plasmid. In comparison to HV (1,200 V/cm, 100 micros) pulse, addition of LV (100 V/cm, 100 ms) pulse increased transfection efficiency severalfold at 10 microg/ml and fivefold at 1 microg/ml. At 10 microg/ml concentration of plasmid, application of four LV pulses after HV pulse increased transfection efficiency by almost 10-fold. Thus, these results show that contribution of electrophoretic forces to DNA electrotransfer can be investigated in vitro using HV and LV pulses.

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Year:  2010        PMID: 20623115     DOI: 10.1007/s00232-010-9270-5

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


  18 in total

1.  Direct visualization at the single-cell level of electrically mediated gene delivery.

Authors:  Muriel Golzio; Justin Teissie; Marie-Pierre Rols
Journal:  Proc Natl Acad Sci U S A       Date:  2002-01-29       Impact factor: 11.205

2.  Electroporation and electrophoretic DNA transfer into cells. The effect of DNA interaction with electropores.

Authors:  S I Sukharev; V A Klenchin; S M Serov; L V Chernomordik
Journal:  Biophys J       Date:  1992-11       Impact factor: 4.033

Review 3.  In vivo electroporation for gene therapy.

Authors:  Loree C Heller; Richard Heller
Journal:  Hum Gene Ther       Date:  2006-09       Impact factor: 5.695

Review 4.  Nonviral approaches for targeted delivery of plasmid DNA and oligonucleotide.

Authors:  Shigeru Kawakami; Yuriko Higuchi; Mitsuru Hashida
Journal:  J Pharm Sci       Date:  2008-02       Impact factor: 3.534

Review 5.  Biological gene delivery vehicles: beyond viral vectors.

Authors:  Yiqi Seow; Matthew J Wood
Journal:  Mol Ther       Date:  2009-03-10       Impact factor: 11.454

6.  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

7.  High-efficiency gene transfer into skeletal muscle mediated by electric pulses.

Authors:  L M Mir; M F Bureau; J Gehl; R Rangara; D Rouy; J M Caillaud; P Delaere; D Branellec; B Schwartz; D Scherman
Journal:  Proc Natl Acad Sci U S A       Date:  1999-04-13       Impact factor: 11.205

8.  Calcium-mediated DNA adsorption to yeast cells and kinetics of cell transformation by electroporation.

Authors:  E Neumann; S Kakorin; I Tsoneva; B Nikolova; T Tomov
Journal:  Biophys J       Date:  1996-08       Impact factor: 4.033

9.  Investigation of the cause of death in a gene-therapy trial.

Authors:  Karen M Frank; D Kyle Hogarth; Jonathan L Miller; Saptarshi Mandal; Philip J Mease; R Jude Samulski; Glen A Weisgerber; John Hart
Journal:  N Engl J Med       Date:  2009-07-09       Impact factor: 91.245

10.  Sequence and time dependence of transfection efficiency of electrically-assisted gene delivery to tumors in mice.

Authors:  Maja Cemazar; Darja Pavlin; Simona Kranjc; Alenka Grosel; Suzana Mesojednik; Gregor Sersa
Journal:  Curr Drug Deliv       Date:  2006-01       Impact factor: 2.565

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  8 in total

1.  Electric field orientation for gene delivery using high-voltage and low-voltage pulses.

Authors:  J Orio; M Coustets; C Mauroy; J Teissie
Journal:  J Membr Biol       Date:  2012-07-27       Impact factor: 1.843

2.  A double-pulse approach for electrotransfection.

Authors:  L Pasquet; E Bellard; M Golzio; M P Rols; J Teissie
Journal:  J Membr Biol       Date:  2014-08-19       Impact factor: 1.843

3.  Different Cell Viability Assays Reveal Inconsistent Results After Bleomycin Electrotransfer In Vitro.

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Journal:  J Membr Biol       Date:  2015-06-16       Impact factor: 1.843

4.  Transfection by Electroporation of Cancer and Primary Cells Using Nanosecond and Microsecond Electric Fields.

Authors:  Eivina Radzevičiūtė; Veronika Malyško-Ptašinskė; Jurij Novickij; Vitalij Novickij; Irutė Girkontaitė
Journal:  Pharmaceutics       Date:  2022-06-11       Impact factor: 6.525

5.  Robust, efficient, and practical electrogene transfer method for human mesenchymal stem cells using square electric pulses.

Authors:  Aaron Liew; Franck M André; Léa L Lesueur; Marie-Amélie De Ménorval; Timothy O'Brien; Lluis M Mir
Journal:  Hum Gene Ther Methods       Date:  2013-08-30       Impact factor: 2.396

Review 6.  Gene Electrotransfer: A Mechanistic Perspective.

Authors:  Christelle Rosazza; Sasa Haberl Meglic; Andreas Zumbusch; Marie-Pierre Rols; Damijan Miklavcic
Journal:  Curr Gene Ther       Date:  2016       Impact factor: 4.391

Review 7.  Does the shape of the electric pulse matter in electroporation?

Authors:  Vitalij Novickij; Nina Rembiałkowska; Wojciech Szlasa; Julita Kulbacka
Journal:  Front Oncol       Date:  2022-09-14       Impact factor: 5.738

8.  Nanosecond range electric pulse application as a non-viral gene delivery method: proof of concept.

Authors:  Paulius Ruzgys; Vitalij Novickij; Jurij Novickij; Saulius Šatkauskas
Journal:  Sci Rep       Date:  2018-10-19       Impact factor: 4.379

  8 in total

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