| Literature DB >> 20625527 |
Otman Otman1, Paul Boullanger, Eric Drockenmuller, Thierry Hamaide.
Abstract
Glycopolymers with mannose units were readily prepared by click chemistry of an azido mannopyranoside derivative and a poly(propargyl acrylate-co-N-vinyl pyrrolidone). These glycopolymers were used as polymer surfactants, in order to obtain glycosylated polycaprolactone nanoparticles. Optimum stabilization for long time storage was achieved by using a mixture of glycopolymers and the non-ionic triblock copolymer Pluronic® F-68. The mannose moieties are accessible at the surface of nanoparticles and available for molecular recognition by concanavalin A lectin. Interaction of mannose units with the lectin were evaluated by measuring the changes in nanoparticles size by dynamic light scattering in dilute media.Entities:
Keywords: click chemistry; con A lectin; dynamic light scattering; glycopolymer; polymer nanoparticles
Year: 2010 PMID: 20625527 PMCID: PMC2900929 DOI: 10.3762/bjoc.6.58
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Preparation of the 8-azido-3,6-dioxaoctyl α-D-mannopyranoside.
Figure 2Preparation of poly(propargyl-co-N-vinyl pyrrolidone) and subsequent addition of the mannose derivative by click chemistry.
Figure 3Size of the nanoparticles stabilized with Pluronic® F-68/NVP-PA-Man (0.8/0.2), after addition of increasing amounts of con A. ● 10 μL; ■ 50 μL; ▲ 100 μL; ♦ 1000 μL. Measurements realized on supernatant of centrifuged nanoparticles.
Figure 4Hydrogen and carbon numbering for NMR assignment.