Dihydrodaidzein-producing Clostridium-like intestinal bacterium, strain TM-40, affects in vitro metabolism of daidzein by fecal microbiota of human male equol producer and non-producers.

Bioscience and microflora Pub Date : 2011-01-01 Epub Date: 2011-08-15 DOI:10.12938/bifidus.30.65
Motoi Tamura, Sachiko Hori, Hiroyuki Nakagawa
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引用次数: 7

Abstract

Much attention has been focused on the biological effects of equol, a metabolite of daidzein produced by intestinal microbiota. However, little is known about the role of isoflavone metabolizing bacteria in the intestinal microbiota. Recently, we isolated a dihydrodaidzein (DHD)-producing Clostridium-like bacterium, strain TM-40, from human feces. We investigated the effects of strain TM-40 on in vitro daidzein metabolism by human fecal microbiota from a male equol producer and two male equol non-producers. In the fecal suspension from the male equol non-producer and DHD producer, DHD was detected in the in vitro fecal incubation of daidzein after addition of TM-40. The DHD concentration increased as the concentration of strain TM-40 increased. In the fecal suspension from the equol producer, the fecal equol production was increased by the addition of strain TM-40. The occupation ratios of Bifidobacterium and Lactobacillales were higher in the equol non-producers than in the equol producer. Adding isoflavone-metabolizing bacteria to the fecal microbiota should facilitate the estimation of the metabolism of isoflavonoids by fecal microbiota. Studies on the interactions among equol-producing microbiota and DHD-producing bacteria might lead to clarification of some of the mechanisms regulating the production of equol by fecal microbiota.

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产生双氢大豆苷元的梭状芽胞杆菌样肠道细菌TM-40影响人类雄性雌马酚产生者和非产生者粪便微生物群对大豆苷元的体外代谢。
马雌酚是大豆苷元的代谢物,其生物学效应一直备受关注。然而,对异黄酮代谢细菌在肠道菌群中的作用知之甚少。最近,我们从人类粪便中分离出一种产生二氢大豆苷元(DHD)的梭状芽胞杆菌,菌株TM-40。研究了菌株TM-40对一株雄性雌马酚产生菌和两株雄性雌马酚不产生菌的粪便菌群体外代谢大豆苷元的影响。在雄性雌马酚不产生者和雄性雄激素产生者的粪便悬浮液中,添加TM-40后,在大豆苷元体外粪便孵育中检测雄激素产生。DHD浓度随菌株TM-40浓度的增加而增加。在产马酚的粪便悬浮液中,添加菌株TM-40可提高粪马酚的产量。双歧杆菌和乳酸杆菌在不产生雌马酚的菌群中占比高于产生雌马酚的菌群。在粪便微生物群中添加代谢异黄酮的细菌有助于估计粪便微生物群对异黄酮的代谢。研究产生马酚的微生物群和产生dhd的细菌之间的相互作用可能有助于阐明粪便微生物群调节马酚产生的一些机制。
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