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Synthesis of Enantiomeric Polyhydroxyalkylpyrrolidines from 1,3‑Dipolar Cycloadducts. Evaluation as Inhibitors of a β‑Galactofuranosidase

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Figshare2016-05-16 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Synthesis_of_Enantiomeric_Polyhydroxyalkylpyrrolidines_from_1_3_Dipolar_Cycloadducts_Evaluation_as_Inhibitors_of_a_Galactofuranosidase/3364216
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Enantiomeric 2,3,4-tris­(hydroxyalkyl)-5-phenylpyrrolidines have been synthesized from the major cycloadducts obtained by the 1,3-dipolar cycloaddition of sugar enones with azomethine ylides derived from natural amino acids. Reduction of the ketone carbonyl group of the cycloadducts, which possess a basic structure of bicyclic 6-(menthyloxy)­hexahydropyrano­[4,3-c]­pyrrol-7­(6H)­one, afforded a number of pyrrolidine-based bicyclic systems. A sequence of reactions, which involved hydrolysis of the menthyloxy substituent, reduction, N-protection, and degradative oxidation, afforded varied pyrrolidine structures having diverse configurations and patterns of substitution; in particular, polyhydroxylated derivatives have been obtained. The unprotected products were isolated as pyrrolidinium trifluoroacetates. Because of the furanose-like nature of the target trihydroxyalkyl pyrrolidines, these molecules have been evaluated as inhibitors of the β-galactofuranosidase from Penicillium fellutanum. The compounds showed practically no inhibitory activity for concentration of pyrrolidines in the range of 0.1–1.6 mM.
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2016-05-16
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