Antiviral activity of self-assembled glycodendro[60]fullerene monoadducts
Author(s) -
Antonio Muñoz,
Beatriz M. Illescas,
Joanna Luczkowiak,
Fátima Lasala,
Renato Ribeiro-Viana,
Javier Rojo,
Rafaël Delgado,
Nazario Martı́n
Publication year - 2017
Publication title -
journal of materials chemistry b
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.316
H-Index - 101
eISSN - 2050-7518
pISSN - 2050-750X
DOI - 10.1039/c7tb01379e
Subject(s) - fullerene , materials science , nanotechnology , chemistry , organic chemistry
A series of amphiphilic glycodendro[60]fullerene monoadducts were efficiently synthesized using the CuAAC "click chemistry" approach. These glycodendrofullerenes can self-assemble in aqueous media, in a process favoured through π-π interactions between the [60]fullerene moieties. This aggregation process leads to big and well-defined compact micelles with a uniform size and spherical-shape. The supramolecular aggregates were characterized using electronic microscopy (SEM and TEM), light scattering methods (DLS) and X-ray methodologies (SAXS and XRD). The antiviral efficiency of these aggregates has been tested in an experimental infection assay using Ebola virus glycoprotein (EboGP) pseudotyped viral particles on Jurkat cells overexpressing DC-SIGN and an improvement in the IC 50 value with respect to other systems endowed with a higher number of carbohydrate ligands is observed.
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