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A short and high-yielding synthesis has been devised to prepare C-linked 2-deoxy-2-acetamido-alpha-D-galactopyranose derivative 3. One of the main advantages of this approach is that it employs commercially available and inexpensive D-glucosamine as the starting material. The key steps include a highly stereoselective C-allylation followed by epimerization of the C-4 hydroxyl group. Building block 3 and orthogonally protected C-linked 2-deoxy-2-acetamido-alpha-D-galactopyranose derivative 2 were obtained in 44% overall yield (six steps) and 29% overall yield (eight steps), respectively. This represents a significant improvement over previously reported syntheses.

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This invention relates to a dietary supplement which is a phytochemical composition. This composition is capable of controlling inflammatory conditions and preventing and curing cancer in mammals. The composition comprises a synergistic mixture of standardized Boswellia extract, salts of glucosamine, and curcuminoids optionally containing bromelain, chondroitin, methylsulphonylmethane, resveratrol, extracts of white Willow and ginger, and quercetin.

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Selective PDE4 inhibition is achieved by aryl and heteroaryl pyrazole compounds. The compounds exhibit improved PDE4 inhibition as compared to compounds such as rolipram and show selectivity with regard to inhibition of other classes of PDEs.

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Chemistry can be defined as the study of matter and the changes it undergoes. You’ll sometimes hear it called the central science because it is the connection between physics and all the other sciences, starting with biology. 53911-68-5, Name is 4-(4-Chlorophenyl)dihydro-2H-pyran-2,6(3H)-dione, molecular formula is C11H9ClO3. In a Patent,once mentioned of 53911-68-5, Electric Literature of 53911-68-5

The present invention relates to cinchona-based bifunctional organocatalysts and methods for preparing chiral hemiesters using the same. More specifically, the present invention relates to methods for preparing chiral hemiesters from prochiral or meso cyclic acid anhydrides via desymmetrization, using bifunctional cinchona alkaloid catalysts comprising sulfonamide functional groups.

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A comparison of the merits of N- and O-methyloxyamines as linkers for carbohydrates is presented for the first time. In particular, optimized synthetic routes for each linker type are given, and the ease of glycan conjugation is described. The hydrolytic stabilities of the respective oxyamine glycoconjugates under a variety of different conditions are reported. This provides insight into the factors that influence hydrolysis rates, and sheds light on the acid-catalysed hydrolysis mechanism.

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Mass spectrometry of hexose-containing disaccharides often yields product ions of m/z 221 in the negative ion mode. Using a Paul trap, isolation and collision-induced dissociation of the m/z 221 anions yielded mass spectra that easily differentiated their stereochemistry and anomeric configuration, for all 16 stereochemical variants. The ions were shown to be glycopyranosyl- glycolaldehydes through chemical synthesis of their standards. The stereochemistry dramatically affected fragmentation which was dependent on four relative stereochemical arrangements: (1) the relationship between the hydroxyl group at position 2 and the anomeric configuration, (2) a cis relationship of the anomeric position and positions 2 and 3 (1,2,3-cis), (3) a 1,2 trans-2,3 cis relationship, and (4) the relationship between the hydroxyl group at position 4 and the anomeric configuration. After labeling the reducing carbonyl oxygen of a series of disaccharides with 18O to mass-discriminate between their monosaccharide components, it was demonstrated that m/z 221 anions are comprised of an intact nonreducing sugar glycosidically linked to a 2-carbon aglycon derived from the reducing sugar, irrespective of the linkage position between monosaccharides. This enabled the location of the intact sugar to be assigned to the nonreducing side of a glycosidic linkage. Detailed studies of experimental factors necessary for reproducibility demonstrated that the unique mass spectrum for each m/z 221 anion could be obtained from month-to-month through the use of an internal energy-input calibrant ion that ensured reproducible energy deposition into the ions. The counterparts to these ions for the 2-acetamido-2-deoxyhexoses were m/z 262 anions, and the anomeric configuration and stereochemistry of these anions could also be reproducibly discriminated for N-acetylglucosamine and N-acetylgalactosamine. The fragmentation patterns of m/z 221 anions provide a firm reproducible basis for assignment of sugar stereochemistries in the gas phase.

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Targeting glycan-binding receptors is an attractive strategy for cell-specific drug and gene delivery. The C-type lectin asialoglycoprotein receptor (ASGPR) is particularly suitable for liver-specific delivery due to its exclusive expression by parenchymal hepatocytes. In this study, we designed and developed an efficient synthesis of carbohydrate-functionalized beta-cyclodextrins (betaCDs) and liposomes for hepatocyte-specific delivery. For targeting of ASGPR, rhodamine B-loaded betaCDs were functionalized with glycodendrimers. Liposomes were equipped with synthetic glycolipids containing a terminal d-GalNAc residue to mediate binding to ASGPR. Uptake studies in the human hepatocellular carcinoma cell line HepG2 demonstrated that betaCDs and liposomes displaying terminal d-Gal/d-GalNAc residues were preferentially endocytosed. In contrast, uptake of betaCDs and liposomes with terminal d-Man or D-GlcNAc residues was markedly reduced. The d-Gal/d-GalNAc-functionalized betaCDs and liposomes presented here enable hepatocyte-specific targeting. Gal-functionalized betaCDs are efficient molecular carriers to deliver doxorubicin in vitro into hepatocytes and induce apoptosis.

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One of the major reasons for studying chemical kinetics is to use measurements of the macroscopic properties of a system, such as the rate of change in the concentration of reactants or products with time. 53911-68-5, Name is 4-(4-Chlorophenyl)dihydro-2H-pyran-2,6(3H)-dione, molecular formula is C11H9ClO3. In a Article,once mentioned of 53911-68-5, Application In Synthesis of 4-(4-Chlorophenyl)dihydro-2H-pyran-2,6(3H)-dione

The synthesis of new chloramphenicol-base-derived thiourea organocatalysts, (1S,2R)-12 a?f and (1R,2R)-15 a?c, and their use in the enantioselective alcoholysis of meso-anhydrides are described. In particular, hemiesters afforded excellent enantioselectivities if low loadings of (1S,2R)-12 a?f were used. Almost no enantioselectivities were achieved with the use of (1R,2R)-15 a?c. This technique was used to synthesize (R)-(?)-baclofen.

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The selective and efficient production of N-acetyl-D-glucosamine (GlcNAc) was achieved from flake type of alpha-chitin by using crude enzymes derived from Aeromonas hydrophila H-2330.

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N-protected 2-amino-2-deoxy-D-glycopyranoses can be selectively halogenated on C-6 by treatment with triphenylphosphine-carbone tetrahalide-pyridine.

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