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Influence of the state of phase of lipid bilayer on the exposure of glucose residues on the surface of liposomes

Academic Article
Publication Date:
2017
abstract:
The presence of carbohydrate-binding proteins (i.e. lectins) on the surface of various bacterial strains and their overexpression in some tumor tissues makes the use of glycosylated liposomes a promising approach for the specific drug delivery in antibacterial and anti-cancer therapies. However, the functionalization of liposome surface with sugar moieties by glycosylated amphiphiles does not ensure the binding of sugar-coated vesicles with lectins. In fact, the composition and properties of lipid bilayer play a pivotal role in the exposure of sugar residues and in the interaction with lectins. The influence of the length of the hydrophilic spacer that links the sugar to liposome surface and of the presence of saturated or unsaturated phospholipids in the lipid bilayer on the ability of glucosylated liposomes to interact with a model lectin, Concanavalin A, was investigated. Our results demonstrate that both the chain length and the prensece of unsaturation, parameters that strongly affect the fluidity of the lipid bilayer, affect agglutination. In particular, agglutination is favored when liposomes are in the gel phase within a defined range of temperature. Moreover, the obtained results confirm that the length of the PEG spacer, that influences both lipid organization and the exposure of sugar moieties to the bulk, plays a crucial role in liposome/lectin interaction
Iris type:
01.01 Articolo in rivista
Keywords:
agglutination; chain lenght; glycosylated liposomes; Langmuir isotherms; phospholipid unsaturation
List of contributors:
Giansanti, Luisa; Mauceri, Alessandro; GRADELLA VILLALVA, Denise; Ceccacci, Francesca; Mancini, Giovanna
Authors of the University:
CECCACCI FRANCESCA
MAUCERI ALESSANDRO
Handle:
https://iris.cnr.it/handle/20.500.14243/330342
Published in:
COLLOIDS AND SURFACES. B, BIOINTERFACES (ONLINE)
Journal
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URL

https://www.sciencedirect.com/science/article/abs/pii/S0927776517305404
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