Spacer-mediated synthesis of contra-thermodynamic spiroacetals: stereoselective synthesis of C2-symmetric difructose dianhydrides

Rubio, EM; García-Moreno, MI; Balbuena, P; Lahoz, FJ; Alvarez, E; Ortiz Mellet, C; García Fernandez, JM

HERO ID

5416628

Reference Type

Journal Article

Year

2006

Language

English

PMID

16526771

HERO ID 5416628
In Press No
Year 2006
Title Spacer-mediated synthesis of contra-thermodynamic spiroacetals: stereoselective synthesis of C2-symmetric difructose dianhydrides
Authors Rubio, EM; García-Moreno, MI; Balbuena, P; Lahoz, FJ; Alvarez, E; Ortiz Mellet, C; García Fernandez, JM
Journal Journal of Organic Chemistry
Volume 71
Issue 6
Page Numbers 2257-2266
Abstract The xylylene moiety (ortho, meta, and para) was employed as a rigid tether in the spacer-mediated synthesis of difructose dianhydrides (DFAs), a unique class of bis-spiroacetal derivatives present in food products. The synthetic methodology exploits the suitability of triflic acid to promote spirocyclization in organic solvents under irreversible reaction conditions, using anomeric isopropylidene fructose derivatives as precursors. Advantage was taken of the strong dependence of the conformational properties of DFAs on the relative configuration of the spiroketal centers. Highly stereoselective syntheses of the contra-thermodynamic difructofuranose and difructopyranose diastereomers, namely the C2-symmetric derivatives having the beta-configuration at both anomeric centers, have been accomplished by judicious choice of the xylylene positional isomer and of the linking position to the fructose building blocks. Interestingly, the rigid spacer concept has also been implemented to favor intermolecular processes leading to higher macrocyclic architectures that incorporate the bis-spiro fructodisaccharide subunit.
Doi 10.1021/jo052184b
Pmid 16526771
Wosid WOS:000236307300008
Is Certified Translation No
Dupe Override No
Is Public Yes
Language Text English