Isolation of a human intestinal anaerobe, Bifidobacterium sp. strain SEN, capable of hydrolyzing sennosides to sennidins

Author:

Akao T1,Che Q M1,Kobashi K1,Yang L1,Hattori M1,Namba T1

Affiliation:

1. Faculty of Pharmaceutical Sciences, Toyama Medical and Pharmaceutical University, Japan.

Abstract

A strictly anaerobic bacterium capable of metabolizing sennosides was isolated from human feces and identified as Bifidobacterium sp., named strain SEN. The bacterium hydrolyzed sennosides A and B to sennidins A and B via sennidin A and B 8-monoglucosides, respectively. Among nine species of Bifidobacterium having beta-glucosidase activity, only Bifidobacterium dentium and B. adolescentis metabolized sennoside B to sennidin B, suggesting that the sennoside-metabolizing bacteria produce a novel type of beta-glucosidase capable of hydrolyzing sennosides to sennidins.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference16 articles.

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3. The metabolism of sennosides A and B by the intestinal microflora: in vitro and in viivo studies on the rat and the mouse;Dressen M.;J. Pharm. Pharmacol.,1981

4. Chemical structure, mode of action and therapeutic action of anthraquinone glycosides;Fairbairn J. W.;Pharm. Weekbl.,1965

5. The relative purgative activities of 1,8-dihydroxyanthracene derivatives;Fairbairn J. W.;J. Pharm. Pharmacol.,1970

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