Electric Fields at the Lipid Membrane Interface

Author:

Ermakov Yury1

Affiliation:

1. Frumkin Institute of Physical Chemistry and Electrochemistry, Russian Academy of Sciences, Moscow 119071, Russia

Abstract

This review presents a comprehensive analysis of electric field distribution at the water–lipid membrane interface in the context of its relationship to various biochemical problems. The main attention is paid to the methodological aspects of bioelectrochemical techniques and quantitative analysis of electrical phenomena caused by the ionization and hydration of the membrane–water interface associated with the phase state of lipids. One of the objectives is to show the unique possibility of controlling changes in the structure of the lipid bilayer initiated by various membrane-active agents that results in electrostatic phenomena at the surface of lipid models of biomembranes—liposomes, planar lipid bilayer membranes (BLMs) and monolayers. A set of complicated experimental facts revealed in different years is analyzed here in order of increasing complexity: from the adsorption of biologically significant inorganic ions and phase rearrangements in the presence of multivalent cations to the adsorption and incorporation of pharmacologically significant compounds into the lipid bilayer, and formation of the layers of macromolecules of different types.

Funder

Ministry of Science and Higher Education of the Russian Federation

Publisher

MDPI AG

Subject

Filtration and Separation,Chemical Engineering (miscellaneous),Process Chemistry and Technology

Reference84 articles.

1. Ion Equilibrium near Lipid Membranes: Empirical Analysis of the Simpliest Model;Ermakov;Colloid J.,2000

2. Tien, H.T., and Ottova, A. (2003). Planar Lipid Bilayers (BLM) and Their Applications, Elsevier.

3. Cevc, G., and Marsh, D. (1987). Phospholipid Bilayers. Physical Principles and Models, Willey-Interscience Publication.

4. Membrane dipole potentials, hydration forces, and the ordering of water at membrane surfaces;Gawrisch;Biophys. J.,1992

5. Voltage-dependent capacitance in lipid bilayers made from monolayers;Alvarez;Biophys. J.,1978

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