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Shape variation of bilayer membrane daughter vesicles induced by anisotropic membrane inclusions

A theoretical model of a two-component bilayer membrane was used in order to describe the influence of anisotropic membrane inclusions on shapes of membrane daughter micro and nano vesicles. It was shown that for weakly anisotropic inclusions the stable vesicle shapes are only slightly out-of-round....

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Autores principales: Bohinc, Klemen, Lombardo, Darko, Kraljiglič, Veronika, Fošnarič, Miha, May, Sylvio, Pernuš, Franjo, Hägerstrand, Henry, Iglič, Aleš
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Versita 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6275760/
https://www.ncbi.nlm.nih.gov/pubmed/16847752
http://dx.doi.org/10.2478/s11658-006-0009-3
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author Bohinc, Klemen
Lombardo, Darko
Kraljiglič, Veronika
Fošnarič, Miha
May, Sylvio
Pernuš, Franjo
Hägerstrand, Henry
Iglič, Aleš
author_facet Bohinc, Klemen
Lombardo, Darko
Kraljiglič, Veronika
Fošnarič, Miha
May, Sylvio
Pernuš, Franjo
Hägerstrand, Henry
Iglič, Aleš
author_sort Bohinc, Klemen
collection PubMed
description A theoretical model of a two-component bilayer membrane was used in order to describe the influence of anisotropic membrane inclusions on shapes of membrane daughter micro and nano vesicles. It was shown that for weakly anisotropic inclusions the stable vesicle shapes are only slightly out-of-round. In contrast, for strongly anisotropic inclusions the stable vesicle shapes may significantly differ from spheres, i.e. they have a flattened oblate shape at small numbers of inclusions in the membrane, and an elongated cigar-like prolate shape at high numbers of inclusions in the vesicle membrane.
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spelling pubmed-62757602018-12-10 Shape variation of bilayer membrane daughter vesicles induced by anisotropic membrane inclusions Bohinc, Klemen Lombardo, Darko Kraljiglič, Veronika Fošnarič, Miha May, Sylvio Pernuš, Franjo Hägerstrand, Henry Iglič, Aleš Cell Mol Biol Lett Article A theoretical model of a two-component bilayer membrane was used in order to describe the influence of anisotropic membrane inclusions on shapes of membrane daughter micro and nano vesicles. It was shown that for weakly anisotropic inclusions the stable vesicle shapes are only slightly out-of-round. In contrast, for strongly anisotropic inclusions the stable vesicle shapes may significantly differ from spheres, i.e. they have a flattened oblate shape at small numbers of inclusions in the membrane, and an elongated cigar-like prolate shape at high numbers of inclusions in the vesicle membrane. Versita 2006-03-01 /pmc/articles/PMC6275760/ /pubmed/16847752 http://dx.doi.org/10.2478/s11658-006-0009-3 Text en © University of Wrocław 2006
spellingShingle Article
Bohinc, Klemen
Lombardo, Darko
Kraljiglič, Veronika
Fošnarič, Miha
May, Sylvio
Pernuš, Franjo
Hägerstrand, Henry
Iglič, Aleš
Shape variation of bilayer membrane daughter vesicles induced by anisotropic membrane inclusions
title Shape variation of bilayer membrane daughter vesicles induced by anisotropic membrane inclusions
title_full Shape variation of bilayer membrane daughter vesicles induced by anisotropic membrane inclusions
title_fullStr Shape variation of bilayer membrane daughter vesicles induced by anisotropic membrane inclusions
title_full_unstemmed Shape variation of bilayer membrane daughter vesicles induced by anisotropic membrane inclusions
title_short Shape variation of bilayer membrane daughter vesicles induced by anisotropic membrane inclusions
title_sort shape variation of bilayer membrane daughter vesicles induced by anisotropic membrane inclusions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6275760/
https://www.ncbi.nlm.nih.gov/pubmed/16847752
http://dx.doi.org/10.2478/s11658-006-0009-3
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