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. 2011;12(9):5616-25.
doi: 10.3390/ijms12095616. Epub 2011 Aug 31.

Synthesis of xylooligosaccharides of daidzein and their anti-oxidant and anti-allergic activities

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Synthesis of xylooligosaccharides of daidzein and their anti-oxidant and anti-allergic activities

Kei Shimoda et al. Int J Mol Sci. 2011.

Abstract

The biocatalytic synthesis of xylooligosaccharides of daidzein was investigated using cultured cells of Catharanthus roseus and Aspergillus sp. β-xylosidase. The cultured cells of C. roseus converted daidzein into its 4'-O-β-glucoside, 7-O-β-glucoside, and 7-O-β-primeveroside, which was a new compound. The 7-O-β-primeveroside of daidzein was further xylosylated by Aspergillus sp. β-xylosidase to daidzein trisaccharide, i.e., 7-O-[6-O-(4-O-(β-d-xylopyranosyl))-β-d-xylopyranosyl]-β-d-glucopyranoside, which was a new compound. The 4'-O-β-glucoside, 7-O-β-glucoside, and 7-O-β-primeveroside of daidzein exerted DPPH free-radical scavenging and superoxide radical scavenging activity. On the other hand, 7-O-β-glucoside and 7-O-β-primeveroside of daidzein showed inhibitory effects on IgE antibody production.

Keywords: anti-allergic activity; anti-oxidant activity; biocatalyst; daidzein; xylooligosaccharide.

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Figures

Figure 1
Figure 1
Synthesis of β-xylooligosaccharides of daidzein (1) by C. roseus and Aspergillus β-xylosidase.

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References

    1. Adlercreutz H, Goldin BR, Gorbach SL, Höckerstedt KAV, Watanabe S. Soybean phytoestrogen intake and cancer risk. J Nutr. 1995;125:757–770. - PubMed
    1. Barnes S. Evolution of the health benefits of soy isoflavones. Proc Soc Exp Biol Med. 1998;217:386–392. - PubMed
    1. Marotta F, Mao GS, Liu T, Chui DH, Lorenzetti A, Xiao Y, Marandola P. Anti-inflammatory and neuroprotective effect of a phytoestrogen compound on rat microglia. Ann N Y Acad Sci. 2006;1089:276–281. - PubMed
    1. Setchell KDR, Cassidy A. Dietary isoflavones: Biological effects and relevance to human health. J Nutr. 1999;129:758S–767S. - PubMed
    1. Chacko BK, Chandler RT, D’Alessandro TL, Mundhekar A, Khoo NK, Botting N, Barnes S, Patel RP. Anti-inflammatory effects of isoflavones are dependent on flow and human endothelial cell PPARgamma. J Nutr. 2007;137:351–356. - PubMed

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