Multivalent glycosylated materials (polymers, surfaces, and particles) often show high affinity toward carbohydrate binding proteins (e.g., lectins) due to the nonlinear enhancement from the cluster glycoside effect. This affinity gain has potential in applications from diagnostics, biosensors, and targeted delivery to anti-infectives and in an understanding of basic glycobiology. This perspective highlights the question of selectivity, which is less often addressed due to the reductionist nature of glycomaterials and the promiscuity of many lectins. The use of macromolecular features, including architecture, heterogeneous ligand display, and the installation of non-natural glycans, to address this challenge is discussed, and examples of se...
Carbohydrate-binding proteins (lectins) play vital roles in cell recognition and signaling, includin...
The emerging functional versatility of cellular glycans makes research on the design of synthetic in...
International audienceMultivalent mannosides with inherent macrophage recognition abilities, built o...
Multivalent glycosylated polymers and particles display enhanced binding affinity toward lectins com...
It has been amply constated that sugar ligand multivalency increases lectin-binding avidities dramat...
Glycopolymers, synthetic polymers displaying carbohydrate moieties, have been linked to many potenti...
Glycan–lectin interactions drive a diverse range of biological signaling and recognition processes. ...
AbstractEngineered receptor fragments and glycoprotein ligands employed in different assay formats h...
Multivalent glycomaterials show high affinity toward lectins but are often nonselective as they lack...
Glycan microarray has become a powerful high-throughput tool for examining binding interactions of c...
Pathogens adhere to the host cells during the first steps of infection through multivalent interacti...
Multivalency plays a major role in biological processes and particularly in the relationship between...
In recent years, glycopolymers have particularly revolutionized the world of macromolecular chemistr...
Identifying and treating infectious diseases remains a challenge for modern healthcare professionals...
Glycan recognition by sugar receptors (lectins) is intimately involved in many aspects of cell physi...
Carbohydrate-binding proteins (lectins) play vital roles in cell recognition and signaling, includin...
The emerging functional versatility of cellular glycans makes research on the design of synthetic in...
International audienceMultivalent mannosides with inherent macrophage recognition abilities, built o...
Multivalent glycosylated polymers and particles display enhanced binding affinity toward lectins com...
It has been amply constated that sugar ligand multivalency increases lectin-binding avidities dramat...
Glycopolymers, synthetic polymers displaying carbohydrate moieties, have been linked to many potenti...
Glycan–lectin interactions drive a diverse range of biological signaling and recognition processes. ...
AbstractEngineered receptor fragments and glycoprotein ligands employed in different assay formats h...
Multivalent glycomaterials show high affinity toward lectins but are often nonselective as they lack...
Glycan microarray has become a powerful high-throughput tool for examining binding interactions of c...
Pathogens adhere to the host cells during the first steps of infection through multivalent interacti...
Multivalency plays a major role in biological processes and particularly in the relationship between...
In recent years, glycopolymers have particularly revolutionized the world of macromolecular chemistr...
Identifying and treating infectious diseases remains a challenge for modern healthcare professionals...
Glycan recognition by sugar receptors (lectins) is intimately involved in many aspects of cell physi...
Carbohydrate-binding proteins (lectins) play vital roles in cell recognition and signaling, includin...
The emerging functional versatility of cellular glycans makes research on the design of synthetic in...
International audienceMultivalent mannosides with inherent macrophage recognition abilities, built o...