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1.
A convenient odorless methodology has been devised for the preparation of 1,2-trans-thio- and selenoglycosides through zinc-mediated cleavage of disulfides and diselenides and reaction of the thiolate and selenides formed in situ with glycosyl bromides. The yields were excellent in all cases.  相似文献   
2.
An unprecedented conversion of thioalkyl/aryl glycoside to the corresponding 1‐O‐acetates has been described using acetic anhydride and HClO4‐SiO2 at rt. Although this transformation does not play an important role in the oligosaccharide synthesis in comparison to its reverse transformation, this gives useful information in selecting the reaction condition for the synthesis of oligosaccharides. The yields were excellent in all cases.  相似文献   
3.

A general, odorless, one‐pot methodology has been developed for the preparation of 1,2‐trans‐thioglycosides and thio‐Michael addition products of carbohydrate derivatives through triphenyl phosphine‐mediated cleavage of disulfides and reaction of the thiolate formed in situ with glycosyl bromides and glycosyl conjugated alkenes.  相似文献   
4.
The use of allyl protecting group mediated intramolecular aglycon delivery (IAD) as a strategy for intramolecular glycosylation has been extended to allow the stereoselective synthesis of α-glucofuranosides and β-rhamnopyranosides, in a totally stereoselective fashion. The efficiency of intramolecular glycosylation is dependent on the protecting group pattern of the glycosyl donor, and on the steric bulk of the glycosyl acceptor.  相似文献   
5.
The fully O-benzylated pentasaccharide glycosyl azide representing the common core structure of N-glycans was synthesized. The β-mannosidic linkage was created by C-2 epimerization of the initially introduced β-d- gluco-unit via DMSO/Ac2O oxidation followed by stereoselective reduction with tetrabutylammonium borohydride.  相似文献   
6.
A convenient and efficient method for preparing 2-hydroxy glycals was developed from thioglycosides by using 1,4-dioxane-bromine complex/DMAP as an efficient promoter with good yield (61-85%). In this synthetic method, a wide range of sugar thioglycosides could be used as substrates.  相似文献   
7.
Starting with 1,2,4,6-tetra-O-acetyl-3-O-dodecyl-β-d-glucose (1), mixed alkyl-perfluoroalkyl substituted sugar derivatives with an anomeric perfluoroalkylthio group and an O-alkyl group in the 3 position were synthesized via 2,4,6-tri-O-acetyl-3-O-dodecyl-1-thio-β-d-glucose (4). The latter was S-perfluorohexylated with 1-iodoperfluorohexane in a dithionite initiated reaction yielding perfluorohexyl 2,4,6-tri-O-acetyl-3-O-dodecyl-1-thio-β-d-glucopyranoside (5). Experiments with the aim compound 5 completely to deacetylate ended in surprising results. Thus, methanolic methanolate solution produced the orthoester 7 as the result of α-fluoride replacement by methoxy groups as well as the methyl glucoside 8 as the result of a transglycosylation reaction. Alumina supported cesium fluoride cleaved regioselectively the two acetyl groups in the 4- and 6-position yielding perfluorohexyl 2-O-acetyl-3-O-dodecyl-1-thio-β-d-glucopyranoside (10). A complete deacetylation of 5 to amphiphile 11 succeeded only with methanolic tert-butanolate. However, the products 8 and 10 were likewise formed.  相似文献   
8.
Four orthogonally stable protecting groups and a selectively cleavable anchor that are stable under basic conditions are required in order that carbohydrates can be employed as chiral polyfunctional scaffolds in combinatorial solid-phase syntheses of high diversity. The schematic representation shows the combinatorial synthesis with a carbohydrate scaffold (SG=protecting group, A=anchor, P=polymer carrier), which proceeds by sequential selective deprotection, functionalization, washing of the solid phase, and cleavage of the anchor.  相似文献   
9.
This work describes a large‐scale synthesis of per‐O‐acetylated mono‐ and disaccharides using a stoichiometric amount of acetic anhydride in the presence of LiClO4 under solvent‐free conditions. The peracetylated saccharides underwent subsequent anomeric bromination and thioglycosidation in one‐pot to yield synthetically valuable building blocks.  相似文献   
10.
A new class of thioglycosides comprising a diazenyl pyridine moiety was assembled from the regioselective reaction of the acetylated α-glycopyranosyl bromide with hitherto unreported 2-mercaptonicotinonitriles. Moreover, the deacetylation of S-glycoside derivatives utilizing of methanolic ammonia solution afforded the free hydroxy thioglycosides in quantitative yields. The identity of the newly obtained derivatives has been achieved via spectroscopic and elemental analyses. All of the newly synthesized derivatives exhibited significant antimicrobial activity towards certain selected microorganisms (bacteria and fungi). Generally, S-glycoside derivatives demonstrated outstanding antibacterial and antifungal activities. Amongst them, the acetylated derivatives showed the most distinguished antifungal and antibacterial activities with a promising minimum inhibitory concentration (MIC) values in comparison with the approved drugs; Amphotericin B and Cefotaxime.  相似文献   
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