Multivalent ligand–protein interactions are a commonly employed approach by nature in many biological processes. Single glycan–protein interactions are often weak, but their affinity and specificity can be drastically enhanced by engaging multiple binding sites. Microarray technology allows for quick, parallel screening of such interactions. Yet, current glycan microarray methodologies usually neglect defined multivalent presentation. Our laser-based array technology allows for a flexible, cost-efficient, and rapid in situ chemical synthesis of peptide scaffolds directly on functionalized glass slides. Using copper(I)-catalyzed azide–alkyne cycloaddition, different monomer sugar azides were attached to the scaffolds, resulting in spatially ...
International audienceThe design of multivalent glycoconjugates has been developed over the past dec...
International audienceCarbohydrate−protein interactions play key roles in a wide variety of biologic...
Spatially encoded glycan microarrays promise to rapidly accelerate our understanding of glycan bindi...
Single glycan-protein interactions are often weak, such that glycan binding partners commonly utiliz...
Carbohydrate-\u200blectin interactions play an important role in the immune system with functions in...
International audienceThe design of multivalent glycoclusters requires the conjugation of biological...
Glycan microarrays are a versatile tool for the identification of endogenous ligands and effective i...
Carbohydrate and protein interactions are often essential in viral and bacterial infection, the immu...
Carbohydrate arrays are potentially one of the most attractive tools to study carbohydrate-based int...
Glycan microarrays are an increasingly utilised tool for analysis of protein-carbohydrate interactio...
Glycan recognition by sugar receptors (lectins) is intimately involved in many aspects of cell physi...
Glycan recognition by sugar receptors (lectins) is intimately involved in many aspects of cell physi...
The interaction of carbohydrates with a variety of biological targets, including antibodies, protein...
This thesis concerns the development of surface ligation techniques for the preparation of carbohydr...
Glycan microarray has become a powerful high-throughput tool for examining binding interactions of c...
International audienceThe design of multivalent glycoconjugates has been developed over the past dec...
International audienceCarbohydrate−protein interactions play key roles in a wide variety of biologic...
Spatially encoded glycan microarrays promise to rapidly accelerate our understanding of glycan bindi...
Single glycan-protein interactions are often weak, such that glycan binding partners commonly utiliz...
Carbohydrate-\u200blectin interactions play an important role in the immune system with functions in...
International audienceThe design of multivalent glycoclusters requires the conjugation of biological...
Glycan microarrays are a versatile tool for the identification of endogenous ligands and effective i...
Carbohydrate and protein interactions are often essential in viral and bacterial infection, the immu...
Carbohydrate arrays are potentially one of the most attractive tools to study carbohydrate-based int...
Glycan microarrays are an increasingly utilised tool for analysis of protein-carbohydrate interactio...
Glycan recognition by sugar receptors (lectins) is intimately involved in many aspects of cell physi...
Glycan recognition by sugar receptors (lectins) is intimately involved in many aspects of cell physi...
The interaction of carbohydrates with a variety of biological targets, including antibodies, protein...
This thesis concerns the development of surface ligation techniques for the preparation of carbohydr...
Glycan microarray has become a powerful high-throughput tool for examining binding interactions of c...
International audienceThe design of multivalent glycoconjugates has been developed over the past dec...
International audienceCarbohydrate−protein interactions play key roles in a wide variety of biologic...
Spatially encoded glycan microarrays promise to rapidly accelerate our understanding of glycan bindi...