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Electropore formation in mechanically constrained phospholipid bilayers

Fernández, María Laura et al · RI ITBA · 2019

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"Molecular dynamics simulations of lipid bilayers in aqueous systems reveal how an applied electric field stabilizes the reorganization of the water–membrane interface into water-filled, membrane-spanning, conductive pores with a symmetric, toroidal geometry. The pore formation process and the resulting symmetric structures are consistent with other mathematical approaches such as continuum models formulated to describe the electroporation process. Some experimental data suggest, however, that the shape of lipid electropores in living cell membranes may be asymmetric. We describe here the axially asym-metric pores that form when mechanical constraints are applied to selected phospholipid atoms. Electropore formation pro-ceeds even with severe constraints in place, but pore shape and pore formation time are affected. Since lateral and transverse movement of phospholipids may be restricted in cell membranes by covalent attachments to or non-covalent associations with other components of the membrane or to membrane-proximate intracellular or extracellular biomolecular assemblies, these lipid-constrained molecular models point the way to more realistic representations of cell membranes in electric fields."

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APA 7

Fernández, M. L. E. A. (2019). Electropore formation in mechanically constrained phospholipid bilayers. http://ri.itba.edu.ar/handle/20.500.14769/1552

MLA

Fernández, María Laura et al. "Electropore formation in mechanically constrained phospholipid bilayers." 2019. http://ri.itba.edu.ar/handle/20.500.14769/1552.

Chicago

Fernández, María Laura et al. 2019. "Electropore formation in mechanically constrained phospholipid bilayers.". http://ri.itba.edu.ar/handle/20.500.14769/1552.

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Fernández, M. L. E. A. 2019, Electropore formation in mechanically constrained phospholipid bilayers, RI ITBA, available at: http://ri.itba.edu.ar/handle/20.500.14769/1552 [Accessed 10 Aug. 2026].

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Titolo
Electropore formation in mechanically constrained phospholipid bilayers
Autore / collaboratori
Fernández, María Laura et al
Editore
RI ITBA
Anno di pubblicazione
2019
ISSN
0022-2631
ISSN
0022-2631
Lingua
Inglés

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