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The invention provides compositions and methods useful for the treatment and/or prevention of interstitial cystitis and/or a related urinary tract condition in man or in animals. Specifically, provided are compositions specially formulated for direct instillation into the bladder and/or parenteral use in the treatment and/or prevention of interstitial cystitis. Compositions adapted for direct instillation into the bladder and/or for systemic administration are provided comprised of therapeutic amounts of: chondroitin sulfate in combination with hyaluronan (hyaluronic acid) are provided. Compositions adapted for direct instillation into the bladder and/or for systemic administration are also provided comprised of therapeutic amounts of: chondroitin sulfate, hyaluronan (hyaluronic acid) and N-acetyl D-glucosamine.

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(Chemical Equation Presented) The scope of the palladium-catalyzed cross-coupling reaction of aryl bis(catechol) silicates has been extended to include the coupling of aryl bromides by employing microwave irradiation. This new set of coupling conditions is tolerant of electron-rich and -deficient aryl bromides. In addition, a variety of substituted aryl bis(catechol) silicates have been successfully cross-coupled.

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The beta-N-acetylhexosaminidase of Aspergillus oryzae catalyses the formation of 2-acetamido-4-O-(2-acetamido-2-deoxy-beta-D-glucopyranosyl)-2-deoxy-D-glucopyranose (di-N-acetylchitobiose) and 2-acetamido-6-O-(2-acetamido-2-deoxy-beta-D-glucopyranosyl)-2-deoxy-D-glucopyranose from p-nitrophenyl 2-acetamido-2-deoxy-beta-D-glucopyranoside and 2-acetamido-2-deoxy-D-glucopyranose.The ratio of the two disaccharides is time-dependent.The ratio of (1<*>4)- to (1<*>6)-isomers is a maximum (ca. 9:1) at the point of disappearance of the glycosyl donor.If left to evolve, the ratio changes to 92:8 in favour of the (1<*>6)-isomer.Either the (1<*>4)- or the (1<*>6)-isomer can be isolated by treating the appropriately enriched disaccharide mixture with the beta-N-acetylhexosaminidase of Jack bean (Canavalia ensiformis) or the beta-N-acetylhexosaminidase of A. oryzae, respectively.Di-N-acetylchitobiose is an efficient donor of 2-acetamido-2-deoxy-D-glucopyranosyl units in reactions catalysed by the N-acetylhexosaminidase of A. oryzae.Di-N-acetylchitobiose itself acts as acceptor to give tri-N-acetylchitotriose .As the trisaccharide accumulates it, in turn, acts as acceptor giving tetra-N-acetylchitotetraose .The product mixture consisting of mono-, di-, tri-, and tetra-saccharides is conveniently separated by charcoal-Celite chromatography. Keywords: Glycosidase; N-acetylhexosaminidase; Chitooligosaccharides; Enzymatic synthesis.

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Brief introduction of 2-(4-Bromobutoxy)tetrahydro-2H-pyran

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This invention is racemic PGE2, racemic PGF2 alpha, racemic PGF2 beta, racemic PGA2, racemic PGB2, analogs of those, and processes for making them. These compounds are useful for a variety of pharmacological purposes, including anti-ulcer, inhibition of platelet aggregation, increase of nasal patency, abortion, and wound healing.

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Galactosyltransferase catalyzes the galactosylation of oligosaccharides terminated by glucose and by 2-acetamido-2-deoxy glucopyranose, respectively. Variations concerning the acceptor substrate as well as the donor substrate are described.

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Lipophilic analogues of the linkage-disaccharide found in the mycobacterial cell wall were synthesized and the synthetic analogues when biologically evaluated showed promising antimycobacterial property with MIC value in the range 3.13-12.50 mug/mL against Mycobacterium tuberculosis H37Rv.

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A catalyst don’t appear in the overall stoichiometry of the reaction it catalyzes, but it must appear in at least one of the elementary reactions in the mechanism for the catalyzed reaction. 14215-68-0, Name is N-((2S,3R,4R,5R,6R)-2,4,5-Trihydroxy-6-(hydroxymethyl)tetrahydro-2H-pyran-3-yl)acetamide, molecular formula is C8H15NO6. In a Article,once mentioned of 14215-68-0, category: Tetrahydropyrans

The synthesis of a library of nucleoside triphoshate mimetics is described where the Mg2+ chelated triphosphate sidechain is replaced by an uncharged methylene-triazole linked monosaccharide sidechain. The compounds have been evaluated as inhibitors of Bacillus anthracis pantothenate kinase and a competitive inhibitor has been identified with a Ki that is 3-fold lower than the Km value of ATP.

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An antiwrinkle agent which is highly effective in alleviating wrinkles caused by the photoaging. The present invention relates to an antiwrinkle agent comprising an N-acetylglucosamine organic acid ester represented by the following general formula (1): wherein R is a linear or branched acyl group having 2 to 18 carbon atoms and the configuration in the 1-position may be either alpha-form or beta-form.

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Lactobacillus acidophilus NCFM maltose phosphorylase (LaMalP) of glycoside hydrolase family 65 catalysed enzymatic synthesis of alpha-(1?4)-glucosidic disaccharides from maltose and five monosaccharides in a coupled phosphorolysis/reverse phosphorolysis one-pot reaction. Thus phosphorolysis of maltose to beta-glucose 1-phosphate circumvented addition of costly beta-glucose 1-phosphate for reverse phosphorolysis with different monosaccharide acceptors, resulting in 91%, 89%, 88%, 86% and 84% yield of alpha-d-glucopyranosyl-(1?4)-N-acetyl-d-glucosaminopyranose [N-acetyl-maltosamine], alpha-d-glucopyranosyl-(1?4)-d-glucosaminopyranose [maltosamine], alpha-d-glucopyranosyl-(1?4)-d-mannopyranose, alpha-d-glucopyranosyl-(1?4)-l-fucopyranose and alpha-d-glucopyranosyl-(1?4)-d-xylopyranose, respectively, from 0.1 M maltose, 0.5 M N-acetyl glucosamine, 0.1 M glucosamine, 0.1 M mannose, 1 M l-fucose and 0.5 M xylose in 0.2 M phosphate-citrate pH 6.2. These current yields of 0.27-0.34 g of disaccharide products from 10 mL reaction mixtures are easy to scale up and moreover the strategy can be applied to large-scale production of other oligosaccharides from low-cost disaccharides as catalysed by phosphorylases with different substrate specificities.

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The beta-N-acetylhexosaminidase from Penicillium oxalicum (PoHex; EC 3.2.1.52) is a fungal glycosidase with an outstandingly high GalNAcase/GlcNAcase activity ratio. It has a remarkable synthetic capability and can process carbohydrates functionalized at various positions. However, the production in the native fungal host is lengthy, unselective and purification from the fungal medium is complicated and low yielding. We present here a novel production method of this enzyme in the eukaryotic host of Pichia pastoris, followed by elegant one-step purification to homogeneity. The resulting recombinant enzyme has improved biochemical and catalytic properties compared to the fungal wild type. Its good production yield (11 mg/400 mL cultivation medium) greatly expands the scope of synthetic applications. We further demonstrate the synthetic utility and broad acceptor specificity of recombinant PoHex in the glycosylation of a series of challenging acceptors with varying structural architectures, namely secondary and tertiary hydroxyl, aldoxime and a poly-hydroxylated compound.

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