A ‘dual click’ strategy for the fabrication of bioselective, glycosylated self-assembled monolayers as glycocalyx models
Autor: | Yasmin Gies, Andreas Terfort, Felix Schweighöfer, Martin Kind, Thisbe K. Lindhorst, Carsten Grabosch |
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Rok vydání: | 2013 |
Předmět: |
Glycosylation
Fabrication Molecular Structure Surface Properties Chemistry Green Fluorescent Proteins Organic Chemistry Infrared spectroscopy Self-assembled monolayer Adhesion Glycocalyx Biochemistry Combinatorial chemistry Bacterial Adhesion Cycloaddition Microscopy Fluorescence Ellipsometry Monolayer Escherichia coli Organic chemistry Click Chemistry Physical and Theoretical Chemistry |
Zdroj: | Organic & Biomolecular Chemistry. 11:4006 |
ISSN: | 1477-0539 1477-0520 |
DOI: | 10.1039/c3ob40386f |
Popis: | Solid surfaces decorated with specific saccharide patterns can serve as a model for the chemically and structurally highly complex glycocalyx of eukaryotic cells. Here we present an approach based on self-assembled monolayers on gold, which are built up in a three-step manner to provide a solid basis, a biorepulsive oligoethylene glycol part, and a specific carbohydrate terminus in a modular way. Of the different reaction sequences, the one with two consecutive 'click reactions' (the copper(i)-catalysed 1,3-dipolar cycloaddition of alkynes with azides and the thiourea-bridging of isothiocyanates with amines) directly 'on SAM' results in the densest layers, as demonstrated by infrared absorption reflection spectroscopy and ellipsometry. As a 'real life' test, the surfaces obtained this way were used for bacterial adhesion experiments. Here the biorepulsivity of the middle part of the SAMs as well as specific binding to the carbohydrate termini could be clearly demonstrated. |
Databáze: | OpenAIRE |
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