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A general method for the synthesis of 2-xylose or glucuronic acid branched (1?3)-linked mannose oligosaccharides has been developed. As a typical example, the synthesis of the methyl glycoside of beta-D-GlcpA-(1?2)-alpha-D-Manp-(1?3)-[beta-D-Xylp- (1?2)-]alpha-D-Manp-(1?3)-[beta-D-Xylp-(1?2)-]alpha-D- Manp, the repeating unit of the exopolysaccharide from Cryptococcus neoformans serovar A, was achieved in a regio- and stereoselective manner.

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Morphine-6-glucuronide (M6G) is the primarily active metabolite of morphine, produced endogenously by the UGT enzyme, which displays analgesic activity. For this reason, M6G is a promising drug candidate for the treatment of severe pain. We described herein a new, efficient and scalable synthesis of M6G using dimorphinic derivatives. This preparation of M6G could be performed on multigram scale with good yield and high purity.

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Allyl (methyl 2,3,4-tri-O-acetyl-beta-D-glucopyranosyl uronate)-(1?3)-4,6-O-benzylidene-2-deoxy-2-phthalimido-beta-D- glucopyranoside (4) and benzyl (methyl 2,3,4-tri-O-acetyl-beta-D- glucopyranosyl uronate)-(1?3)-4,6-O-benzylidene-2-deoxy-2-phthalimido- beta-D-glucopyranoside (5) have been efficiently synthesized by coupling allyl 4,6-O-benzylidene-2-deoxy-2-phthalimido-beta-D-glucopyranoside (2) or benzyl 4,6-O-benzylidene-2-deoxy-2-phthalimido-beta-D-glucopyranoside (3) with methyl (2,3,4-tri-O-acetyl-1-O-trichloroacetimidoyl)-alpha-D- glucopyranuronate (1), respectively, using trimethylsilyl triflate as promoter.

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Catalysts function by providing an alternate reaction mechanism that has a lower activation energy than would be found in the absence of the catalyst. In some cases, the catalyzed mechanism may include additional steps. 92420-89-8, Name is (2S,3S,4S,5R,6R)-2-(Methoxycarbonyl)-6-(2,2,2-trichloro-1-iminoethoxy)tetrahydro-2H-pyran-3,4,5-triyl triacetate, molecular formula is C15H18Cl3NO10. In a Article,once mentioned of 92420-89-8, SDS of cas: 92420-89-8

beta-D-Xylp-(1?4)-alpha-D-Manp-(1?3)-[beta-D-Xylp- (1?2)]-alpha-D-Manp-(1?3)-[beta-D-Xylp-(1?2)]-alpha-D-Manp, the fragment of the exopolysaccharide from Cryptococcus neoformans serovar B, was synthesized as its methyl glycoside. Thus, acetylation of allyl 3-O-benzoyl-4,6-O-benzylidene-alpha-D-mannopyranoside (1) followed by debenzylidenation and selective 6-O-benzoylation afforded allyl 2-O-acetyl-3,6-di-O-benzoyl-alpha-D-mannopyranoside (4). Glycosylation of 4 with 2,3,4-tri-O-benzoyl-D-xylopyranosyl trichloroacetimidate (5) furnished the beta-(1?4)-linked disaccharide 6. Deallylation followed by trichloroacetimidate formation gave the disaccharide donor 8, and subsequent coupling with allyl 2,3,4-tri-O-benzoyl-beta-D-xylopyranosyl-(1?2)-4,6- di-O-benzoyl-alpha-D-mannopyranoside (9), produced the tetrasaccharide 10. Reiteration of deallylation and trichloroacetimidate formation from 10 yielded the tetrasaccharide donor 12. The downstream disaccharide acceptor 18 was obtained by condensation of 5 with methyl 3-O-acetyl-4,6-O-benzylidene-alpha- D-mannopyranoside, followed by debenzylidenation, benzoylation, and selective 3-O-deacetylation. Coupling of 18 with 12 afforded the hexasaccharide 19, and subsequent deprotection gave the hexasaccharide glycoside 20. Selective 2?-O-deacetylation of 19 gave the hexasaccharide acceptor 21. Condensation of 21 with glucopyranosyluronate imidate 22 did not produce the expected heptasaccharide glycoside; instead, a transacetylation product 19 was obtained. Meanwhile, there was no reaction between 21 and the bromide donor 23.

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HPLC of Formula: C15H18Cl3NO10. Healthcare careers for chemists are once again largely based in laboratories, although increasingly there is opportunity to work at the point of care, helping with patient investigation. 92420-89-8, Name is (2S,3S,4S,5R,6R)-2-(Methoxycarbonyl)-6-(2,2,2-trichloro-1-iminoethoxy)tetrahydro-2H-pyran-3,4,5-triyl triacetate. In a document type is Patent, introducing its new discovery.

The present invention provides compounds of formula (I) that are prodrugs of catecholamine for use in treatment of neurodegenerative diseases and disorders. The present invention also provides pharmaceutical compositions comprising compounds of the invention and methods of treating neurodegenerative or neuropsychiatric diseases and disorders using the compounds of the invention, in particular Parkinson’s disease. Accordingly, the present invention relates to compounds of formula (Id) wherein R1 is H and R2 is selected from one of the substituents (i) and (ii) below; or R1 is selected from one of the substituents (i) and (ii) below and R2 is H; or R1 and R2 are both represented by substituent (i) below; or R1 and R2 are both represented by substituent (ii) below; or R1 is substituent (i) and R2 is substituent (ii); or R1 is substituent (ii) and R2 is substituent (i); (i) (ii) wherein * indicates the attachment point; and wherein the carbon atom at the attachment point on substituent (i) is in the S-configuration; or a pharmaceutically acceptable salt thereof.

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A gram scale synthesis of the glucuronide metabolite of ABT-724 is reported. Glycosidic coupling between a trichloroacetimidate glucuronyl donor and a Cbz-protected hydroxypyridylpiperazine glycosyl acceptor is the key step in the synthesis, since attempts to directly glucuronicrossed d signate the aglycon, aglycon derivatives, and other truncated glycosyl acceptors were unsuccessful. The route was used to produce 2.1 g of metabolite in eight steps from 2-chloro-5-hydroxypyridine in 21% overall yield.

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A versatile new approach is reported for the total synthesis of five glucuronide metabolites of epicatechin, using selective protection/deprotection techniques.

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Carbohydrates are involved in many important pathological processes, such as bacterial and viral infections, by means of carbohydrate-protein interactions. Glycoconjugates with multiple carbohydrates are involved in multivalent interactions, thus increasing their binding strengths to proteins. In this work, we report the efficient synthesis of novel muramic and glucuronic acid glycodendrimers as potential Dengue virus antagonists. Aromatic scaffolds functionalized with a terminal ethynyl groups were coupled to muramic and glucuronic acid azides by click chemistry through optimized synthetic strategies to afford the desired glycodendrimers with high yields. Surface Plasmon Resonance studies have demonstrated that the compounds reported bind efficiently to the Dengue virus envelope protein. Molecular modelling studies were carried out to simulate and explain the binding observed. These studies confirm that efficient chemical synthesis of glycodendrimers can be brought about easily offering a versatile strategy to find new active compounds against Dengue virus.

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Two hexasaccharides, beta-D-Xylp-(1?2)-alpha-D-Manp-(1?3)-[beta-D-Xylp-(1?2)-] alpha-D-Manp-(1?3)-[beta-D-GlcpA-(1?2)-]alpha-D-Manp and beta-D-GlcpA-(1?2)-alpha-D-Manp-(1?3)-[beta-D-Xylp-(1?2)-] alpha-D-Manp-(1?3)-[beta-D-Xylp-(1?2)-]alpha-D-Manp, the repeating unit of the exopolysaccharide from Cryptococcus neoformans serovar A, were synthesized as their methyl glycosides in a regio- and stereoselective manner.

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The present invention generally relates to a class of antimicrobial compounds, to compositions containing said compounds and to the use of said compounds for medical and non-medical purposes. More specifically, the present invention relates to antimicrobial compounds capable of changing microbiota composition and function by selectively inhibiting distinct microbial species.

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