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Programmable one-pot oligosaccharide synthesis

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TLDR
In this article, the reactivity of a number of p-methylphenyl thioglycoside (STol) donors which are either fully protected or have one hydroxyl group exposed has been quantitatively determined by HPLC in conjunction with the development of a broadly applicable approach for a facile one-pot synthesis of oligosaccharides.
Abstract
The reactivity of a number of p-methylphenyl thioglycoside (STol) donors which are either fully protected or have one hydroxyl group exposed has been quantitatively determined by HPLC in conjunction with the development of a broadly applicable approach for a facile one-pot synthesis of oligosaccharides. The influence on reactivity of the structural effects of different monosaccharide cores and different protecting groups on each glycoside donor is characterized and quantified. In addition, a correlation between glycosyl donor reactivity and the chemical shift of the anomeric proton by 1 H NMR has been established. A database of thioglycosides as glycosyl donors has been created using this reactivity data. The utility is demonstrated by the easy and rapid one-pot assembly of various linear and branched oligosaccharide structures. In addition, a computer program as been described for use as a database search tool and guide for the selection of building blocks for the one-pot assembly of a desired oligosaccharide or a library of individual oligosaccharides.

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Citations
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Journal ArticleDOI

Synthesis and medical applications of oligosaccharides

TL;DR: Synthetic tools and high-throughput experiments such as carbohydrate arrays are beginning to affect biological research, and are being applied to the development of carbohydrate-based diagnostics, vaccines and therapeutics.
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Opportunities and challenges in synthetic oligosaccharide and glycoconjugate research

TL;DR: Synthetic oligosaccharides and glycoconjugates are increasingly used as probes for biological research and as lead compounds for drug and vaccine discovery, and the power of carbohydrate chemistry is highlighted by an ability to synthesize glycoproteins.
Journal ArticleDOI

Toward automated synthesis of oligosaccharides and glycoproteins.

TL;DR: Recent advances in carbohydrate synthesis are described, with particular focus on developments that have potential application to the automated synthesis of oligosaccharides, glycopeptides, and glycoproteins.
Journal ArticleDOI

Glycan Microarrays for Decoding the Glycome

TL;DR: This review covers the development of glycan microarrays and applications that have provided insights into the roles of mammalian and microbial GBPs.
References
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Journal ArticleDOI

Biological roles of oligosaccharides: all of the theories are correct

TL;DR: The only common features of the varied functions of oligosaccharides are that they either mediate ‘specific recognition’ events or that they provide ‘modulation’ of biological processes.
Journal ArticleDOI

ELAM-1 mediates cell adhesion by recognition of a carbohydrate ligand, sialyl-Lex

TL;DR: Cell adhesion by ELAM-1 is shown to be mediated by a carbohydrate ligand, sialyl-Lewis X (SLex; NeuAc alpha 2,3Gal beta 1,4(Fuc alpha 1,3)-GlcNAc-), a terminal structure found on cell-surface glycoprotein and glycolipid carbohydrate groups of neutrophils.
Journal ArticleDOI

Selectins: interpreters of cell-specific carbohydrate information during inflammation.

Laurence A. Lasky
- 06 Nov 1992 - 
TL;DR: The biology of these carbohydrate-binding adhesive proteins are reviewed and the potential for developing anti-inflammatory antagonists that could inhibit binding events that are selectin-mediated is discussed.
Journal ArticleDOI

Selectin ligands

TL;DR: This review analyzes the matter and suggests the hypothesis that at least some of the specificity of the selectins may involve recognition of "clustered saccharide patches."
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