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Original

Variability of the Minimal Transmembrane Voltage Resulting in Detectable Membrane Electroporation

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Pages 372-385 | Published online: 07 Jul 2009

References

  • Bier M. Resealing dynamics of a cell membrane after electroporation. Phys. Rev. E 2002; 66: 062905
  • Čegovnik U., Novaković S. Setting optimal parameters for in vitro electrotransfection of B16F1, SA1, LPB, SCK, L929 and CHO cells using predefined exponentially decaying electric pulses. Bioelectrochemistry 2004; 62: 73–82
  • Dean D. A. Nonviral gene transfer to skeletal, smooth, and cardiac muscle in living animals. Amer. J. Physiol. Cell. Physiol. 2005; 289: C233–C245
  • Denet A. R., Vanbever R., Préat V. Skin electroporation for transdermal and topical delivery. Adv. Drug Deliv. Rev. 2004; 56: 659–674
  • Faurie C., Golzio M., et al. Electric field induced cell membrane permeabilization and gene transfer: theory and experiments. Eng. Life Sci. 2005; 5: 179–186
  • Fošnarič M., Kralj-Iglič V., et al. Stabilization of pores in lipid bilayers by anisotropic inclusions. J. Phys. Chem. B 2003; 107: 12519–12526
  • Gabriel B., Teissié J. Direct observation in the millisecond time range of fluorescent molecule asymmetrical interaction with the electropermeabilized cell membrane. Biophys. J. 1997; 73: 2630–2637
  • Golzio M., Mazzolini L., et al. Inhibition of gene expression in mice muscle by in vivo electrically mediated siRNA delivery. Gene Ther. 2005; 12: 246–251
  • Gothelf A., Mir L. M., Gehl J. Electrochemotherapy: results of cancer treatment using enhanced delivery of bleomycin by electroporation. Cancer Treat. Rev. 2003; 29: 371–378
  • Grynkiewicz G., Poenie M., Tsien R. Y. A new generation of Ca2+ indicators with greatly improved fluorescence properties. J. Biol. Chem. 1985; 260: 3440–3450
  • Heller R., Gilbert R., Jaroszeski M. J. Clinical applications of electrochemotherapy. Adv. Drug Deliv. Rev. 1999; 35: 119–129
  • Hibino M., Itoh H., Kinosita K., Jr. Time courses of cell electroporation as revealed by submicrosecond imaging of transmembrane potential. Biophys. J. 1993; 64: 1789–1800
  • Kakorin S., Stoylov S. P., Neumann E. Electro-optics of membrane electroporation in diphenylhexatriene-doped lipid bilayer vesicles. Biophys. Chem. 1996; 58: 109–116
  • Kakorin S., Liese T., Neumann E. Membrane curvature and high-field electroporation of lipid bilayer vesicles. J. Phys. Chem. B 2003; 107: 10243–10251
  • Kandušer M., Fošnarič M., et al. Effect of surfactant polyoxyethylene glycol (C12E8) on electroporation of cell line DC3F. Colloid Surf. A 2003; 214: 205–217
  • Kotnik T., Bobanović F., Miklavčič D. Sensitivity of transmembrane voltage induced by applied electric fields—a theoretical analysis. Bioelectrochem. Bioenerg. 1997; 43: 285–291
  • Kotnik T., Miklavčič D. Analytical description of transmembrane voltage induced by electric fields on spheroidal cells. Biophys. J. 2000a; 79: 670–679
  • Kotnik T., Miklavčič D. Second-order model of membrane electric field induced by alternating external electric fields. IEEE Trans. Biomed. Eng. 2000b; 47: 1074–1081
  • Kotnik T., Miklavčič D. Theoretical evaluation of voltage inducement on internal membranes of biological cells exposed to electric fields. Biophys. J. 2006; 90: 480–491
  • Marszalek P., Liu D. S., Tsong T. Y. Schwan equation and transmembrane potential induced by alternating electric field. Biophys. J. 1990; 58: 1053–1058
  • Miklavčič D., Čorović S., et al. Importance of tumour coverage by sufficiently high local electric field for effective electrochemotherapy. Eur. J. Cancer Suppl. 2006; 4: 45–51
  • Mir L. M. Bases and rationale of the electrochemotherapy. Eur. J. Cancer Suppl. 2006; 4: 38–44
  • Neumann E., Kakorin S., Tönsing K. Fundamentals of electroporative delivery of drugs and genes. Bioelectrochem. Bioenerg. 1999; 48: 3–16
  • Pauly H., Schwan H. P. Über die Impedanz einer Suspension von kugelförmigen Teilchen mit einer Schale. Z. Naturforsch. 1959; 14B: 125–131
  • Pliquett U., Weaver J. C. Feasibility of an electrode-reservoir device for transdermal drug delivery by noninvasive skin electroporation. IEEE Trans. Biomed. Eng. 2007; 54: 536–538
  • Puc M., Kotnik T., et al. Quantitative model of small molecules uptake after in vitro cell electropermeabilization. Bioelectrochemistry 2003; 60: 1–10
  • Pucihar G., Kotnik T., et al. Numerical determination of transmembrane voltage induced on irregularly shaped cells. Ann. Biomed. Eng. 2006; 34: 642–652
  • Rols M. P., Teissié J. Electropermeabilization of mammalian cells: quantitative analysis of phenomenon. Biophys. J. 1990; 58: 1089–1098
  • Serša G., Čemažar M., Rudolf Z. Electrochemotherapy: advantages and drawbacks in treatment of cancer patients. Cancer Ther. 2003; 1: 133–142
  • Teissié J., Rols M. P. An experimental evaluation of the critical potential difference inducing cell membrane electropermeabilization. Biophys. J. 1993; 65: 409–413
  • Teissié J., Eynard N., et al. Recent biotechnological developments of electropulsation: a prospective review. Bioelectrochemistry 2002; 55: 107–112
  • Tönsing K., Kakorin S., et al. Annexin V and vesicle membrane electroporation. Eur. Biophys. J. 1997; 26: 307–318
  • Valič B., Golzio M., et al. Effect of electric field induced transmembrane potential on spheroidal cells: theory and experiment. Eur. Biophys. J. 2003; 32: 519–528
  • Weaver J. C., Chizmadzev Y. A. Theory of electroporation: a review. Bioelectrochem. Bioenerg. 1996; 41: 135–160
  • Zudans I., Agarwal A., et al. Numerical calculations of single-cell electroporation with an electrolyte-filled capillary. Biophys. J. 2007; 92: 3696–3705

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