Journal of Agricultural and Food Chemistry 2007-01-10

alpha-Glucosidase inhibitory profile of catechins and theaflavins.

Toshiro Matsui, Takashi Tanaka, Satomi Tamura, Asami Toshima, Kei Tamaya, Yuji Miyata, Kazunari Tanaka, Kiyoshi Matsumoto

Index: J. Agric. Food Chem. 55(1) , 99-105, (2007)

Full Text: HTML

Abstract

To clarify the postprandial glucose suppression effect of flavonoids, the inhibitory effects of catechins and theaflavins against alpha-glucosidase (AGH) were examined in this study. It was initially demonstrated that theaflavins and catechins preferentially inhibited maltase rather than sucrase in an immobilized AGH inhibitory assay system. For the maltase inhibitory effects of theaflavins, the effects were observed in descending order of potency of theaflavin (TF)-3-O-gallate (Gal) > TF-3,3'-di-O-Gal > TF-3'-O-Gal > TF. This suggests that the AGH inhibition induced by theaflavins is closely associated with the presence of a free hydroxyl group at the 3'-position of TF as well as the esterification of TF with a mono-Gal group. In addition, the R-configuration at the 3'-position of TF-3-O-Gal showed a higher inhibitory activity than the S-configuration. As a result of a single oral administration of maltose (2 g/kg) in rats, a significant reduction in blood glucose level was observed at a dose of 10 mg/kg of TF-3-O-Gal, demonstrating for the first time that TF-3-O-Gal can suppress glucose production from maltose through inhibition of AGH in the gut.


Related Compounds

  • Theaflavine Galla...

Related Articles:

Black tea polyphenols inhibit tumor proteasome activity.

2012-01-01

[In Vivo 26(2) , 197-202, (2012)]

The microbiota is essential for the generation of black tea theaflavins-derived metabolites.

2012-01-01

[PLoS ONE 7(12) , e51001, (2012)]

Theaflavin-3-gallate and theaflavin-3'-gallate, polyphenols in black tea with prooxidant properties.

2008-07-01

[Basic Clin Pharmacol Toxicol. 103(1) , 66-74, (2008)]

Combination of HSCCC and Sephadex LH-20 methods An approach to isolation and purification of the main individual theaflavins from black tea.

2008-01-01

[J. Chromatogr. B. Analyt. Technol. Biomed. Life Sci. 861(1) , 140-4, (2008)]

PCR differential display-based identification of regulator of G protein signaling 10 as the target gene in human colon cancer cells induced by black tea polyphenol theaflavin monogallate.

2008-12-28

[Eur. J. Pharmacol. 601(1-3) , 66-72, (2008)]

More Articles...