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<i>C</i>‐<scp>D</scp>‐Glucopyranosyl Derivatives of Tocopherols – Synthesis and Evaluation as Amphiphilic Antioxidants
14
Citations
56
References
2008
Year
Bioorganic ChemistryNutraceutical IngredientGlycobiologyOrganic ChemistryChemistryPolyphenolicsAmphiphilic AntioxidantsTocopherols – SynthesisDerivativesBiochemistryDiversity-oriented SynthesisDimethylhydroquinone Dimethyl EthersO 4PharmacologyNatural Product SynthesisNatural SciencesMeta IsomersMedicineSynthetic Chemistry
Abstract Treatment of dimethylhydroquinone dimethyl ethers ( ortho and meta isomers) with glycopyranose pentaacetates ( D ‐ gluco , D ‐ galacto ) in the presence of SnCl 4 and F 3 CCO 2 Ag selectively afforded the corresponding C ‐β‐ D ‐glycosyl derivatives by aromatic electrophilic substitution. Oxidation of the dimethoxybenzene moiety with ceric ammonium nitrate delivered C ‐β‐ D ‐glycosyl‐dimethylbenzoquinones, which were reduced with Na 2 S 2 O 4 to the corresponding C ‐β‐ D ‐glycosyl‐dimethylhydroquinones. ZnCl 2 ‐catalyzed cyclization either with methylbut‐2‐en‐1‐ol (prenyl alcohol) or with all‐racemic phytol led to acetyl‐protected C ‐β‐ D ‐glycosyl chromanols or C ‐β‐ D ‐glycosyl tocopherols, the sugar residues of which were deacetylated under base catalysis conditions. These new molecules were evaluated as antioxidants in terms of their ability to inhibit the peroxidation of linoleic acid in SDS micelles. The position of the C ‐glucosyl moiety on the phenolic nucleus emerges as the critical structural determinant of their activity. (© Wiley‐VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2008)
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