Literature DB >> 25957565

Multi-dimensional glycan microarrays with glyco-macroligands.

Satya Nandana Narla1, Huan Nie2, Yu Li2, Xue-Long Sun3.   

Abstract

Glycan microarray has become a powerful high-throughput tool for examining binding interactions of carbohydrates with the carbohydrate binding biomolecules like proteins, enzymes, antibodies etc. It has shown great potential for biomedical research and applications, such as antibody detection and profiling, vaccine development, biomarker discovery, and drug screening. Most glycan microarrays were made with monovalent glycans immobilized directly onto the array surface via either covalent or non-covalent bond, which afford a multivalent glycans in two dimensional (2D) displaying. A variety of glyco-macroligands have been developed to mimic multivalent carbohydrate-protein interactions for studying carbohydrate-protein interactions and biomedical research and applications. Recently, a number of glyco-macroligands have been explored for glycan microarray fabrication, in particular to mimick the three dimensional (3D) multivalent display of cell surface carbohydrates. This review highlights these recent developments of glyco-macroligand-based microarrays, predominantly, novel glycan microarrays with glyco-macroligands like glycodendrimers, glycopolymers, glycoliposomes, neoglycoproteins, and glyconanoparticles with the effort in controlling the density and orientation of glycans on the array surface, which facilitate both their binding specificity and affinity and thus the high performance of glycan microarrays.

Entities:  

Keywords:  Glycan microarray; Glycodendrimers; Glycoliposomes; Glyconanoparticles; Glycopolymers; Neoglycoproteins

Mesh:

Substances:

Year:  2015        PMID: 25957565     DOI: 10.1007/s10719-015-9580-z

Source DB:  PubMed          Journal:  Glycoconj J        ISSN: 0282-0080            Impact factor:   2.916


  50 in total

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5.  Self-assembly formation of multiple DNA-tethered lipid bilayers.

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Authors:  Sungjin Park; Jeffrey C Gildersleeve; Ola Blixt; Injae Shin
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9.  In situ formation and characterization of poly(ethylene glycol)-supported lipid bilayers on gold surfaces.

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Review 5.  Advances in Tools to Determine the Glycan-Binding Specificities of Lectins and Antibodies.

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Review 6.  Surface Modification with Control over Ligand Density for the Study of Multivalent Biological Systems.

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Journal:  ChemistryOpen       Date:  2020-01-08       Impact factor: 2.911

Review 7.  Notable Aspects of Glycan-Protein Interactions.

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