Enzymatic Synthesis of α-Glucosides of Resveratrol with Surfactant Activity

We report the synthesis of a series of α‐glucosyl derivatives of resveratrol (3,5,4′‐trihydroxystilbene) by a transglycosylation reaction catalyzed by the enzyme cyclodextrin glucanotransferase (CGTase) using starch as glucosyl donor. Several reaction parameters (temperature, solvent composition, en...

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Published inAdvanced synthesis & catalysis Vol. 353; no. 7; pp. 1077 - 1086
Main Authors Torres, Pamela, Poveda, Ana, Jimenez-Barbero, Jesus, Parra, Jose Luis, Comelles, Francesc, Ballesteros, Antonio O., Plou, Francisco J.
Format Journal Article
LanguageEnglish
Published Weinheim WILEY-VCH Verlag 09.05.2011
WILEY‐VCH Verlag
Wiley
Wiley-VCH
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Summary:We report the synthesis of a series of α‐glucosyl derivatives of resveratrol (3,5,4′‐trihydroxystilbene) by a transglycosylation reaction catalyzed by the enzyme cyclodextrin glucanotransferase (CGTase) using starch as glucosyl donor. Several reaction parameters (temperature, solvent composition, enzyme concentration and starch/resveratrol ratio) were optimized. The yield of α‐glucosylated products reached 50% in 24 h. The structures of the derivatives were determined by a combination of amyloglucosidase‐hydrolysis tests, MS and 2D‐NMR. Three families of products were obtained: glucosylated at 3‐OH, at 4′‐OH and at both 3‐OH and 4′‐OH. The bonds between glucoses were basically α(1→4). Interestingly, the water solubilities of the α‐glucosylated derivatives were at least 65‐ and 5‐fold higher than those of resveratrol and the natural β‐glucosylated derivative (piceid), respectively. In contrast with piceid, the synthesized α‐glucosylated compounds exhibited surfactant activity, with critical micelle concentration (CMC) values in the range 0.5–3.6 mM. Although the incorporation of a glucosyl moiety caused a loss of antioxidant activity (more pronounced in the position 3‐OH compared with 4′‐OH), the fact that the glycosides need to be converted into the aglycones before they are absorbed minimizes such an effect. In contrast, the modification of physicochemical properties such as solubility and partition coefficient by glycosylation could exert a positive influence on the bioavailability of resveratrol.
Bibliography:istex:9888E84BFE0F462F6E6862EC372B5D0AF69FB273
Comunidad de Madrid
Spanish Ministry of Science and Innovation - No. Project BIO2007-67708-C04-01
ark:/67375/WNG-9KJJ3QRK-9
ArticleID:ADSC201000968
CSIC - No. Project "Intramural" 200680F0132
ISSN:1615-4150
1615-4169
DOI:10.1002/adsc.201000968