Affiliation:
1. Indiana University Bloomington , 800 E. Kirkwood Ave , Bloomington, IN 47408 , USA
Abstract
Abstract
Carbohydrate structures are often complex. Unfortunately, synthesis of the range of sugar combinations precludes the use of a single coupling protocol or set of reagents. Adapting known, reliable bench-chemistry reactions to work via automation will help forward the goal of synthesizing a broad range of glycans. Herein, the preparation of di- and tri-saccharides of alpha 1→2 rhamnan fragments is demonstrated using thioglycoside donors with the development for a solution-phase-based automation platform of commonly used activation conditions using N-iodosuccinimide (NIS) with trimethylsilyl triflate. Byproducts of the glycosylation reaction are shown to be compatible with hydrazine-based deprotection conditions, lending broader functionality to this method as only one fluorous-solid-phase extraction step per coupling/deprotection cycle is required.
Funder
National Institute of General Medical Sciences
Subject
General Chemical Engineering,General Chemistry
Reference35 articles.
1. M. Panza, S. G. Pistorio, K. J. Stine, A. V. Demchenko. Chem. Rev.118, 8105 (2018).
2. P. H. Seeberger, W.-C. Haase. Chem. Rev.100, 4349 (2000).
3. A. Pardo-Vargas, M. Delbianco, P. H. Seeberger. Curr. Opin. Chem. Biol.46, 48 (2018).
4. E. R. Palmacci, M. C. Hewitt, P. H. Seeberger. Angew. Chem. Int. Ed. Engl.40, 4433 (2001).
5. N. V. Ganesh, K. Fujikawa, Y. H. Tan, K. J. Stine, A. V. Demchenko. Org. Lett.14, 3036 (2012).
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