Measuring the potential energy barrier to lipid bilayer electroporation

Author:

Sengel Jason T.1,Wallace Mark I.2ORCID

Affiliation:

1. Department of Chemistry, Chemistry Research Laboratory, University of Oxford, 12 Mansfield Road, Oxford, OX1 3TA, UK

2. Department of Chemistry, King's College London, Britannia House, 7 Trinity Street, London, SE1 1DB, UK

Abstract

Electroporation is a common tool for gene transfection, tumour ablation, sterilization and drug delivery. Using experimental methods, we explore the temperature dependence of electropore formation in a model membrane system (droplet-interface bilayers), using optical single-channel recording to image the real-time gating of individual electropores. We investigate the influence of the agarose substrate on electropores formed in this system. Furthermore, by examining the temperature-dependent kinetics of pore opening and closure we are able to estimate a barrier to pore opening in 1,2-diphytanoyl- sn -glycero-3-phosphocholine (DPhPC) membranes to be 25.0 ± 8.3 k B T , in agreement with previous predictions. Overall these measurements help support the toroidal model of membrane electroporation. This article is part of the themed issue ‘Membrane pores: from structure and assembly, to medicine and technology’.

Funder

European Research Council

Publisher

The Royal Society

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology

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