We have investigated the bacterial-dependent metabolism of (-)-epicatechin and (+)-catechin using a pH-controlled, stirred, batch-culture fermentation system reflective of the distal region of the human large intestine. Incubation of (-)-epicatechin or (+)-catechin (150mg/l or 1000mg/l) with faecal bacteria, led to the generation of 5-(3,4'-dihydroxyphenyl)-gamma-valerolactone, 5-phenyl-gamma-valerolactone and phenylpropionic acid. However, the formation of these metabolites from (+)-catechin required its initial conversion to (+)-epicatechin. The metabolism of both flavanols occurred in the presence of favourable carbon sources, notably sucrose and the prebiotic fructo-oligosaccharides, indicating that bacterial utilisation of flavanols al...
Consumption of anthocyanins has been related with beneficial health effects. However, bioavailabilit...
Microbial metabolism of the stereoisomers (+)-catechin and (−)-epicatechin was compared by two analy...
Theaflavin-3,3′-digallate (TFDG), a bioactive black tea phenolic, is poorly absorbed in the small in...
We have investigated the bacterial-dependent metabolism of (-)-epicatechin and (+)-catechin using a ...
The aim of the study was to investigate in vitro microbial metabolism of flavan-3-ols [(+)-catechin,...
International audienceFlavan-3-ols are a largely consumed subclass of flavonoids and are involved in...
There is considerable interest in the bioavailability of flavan-3-ols such as tea catechins and thei...
Although the relationship between gut microbiota and flavan-3-ol metabolism differs greatly between ...
Scope: The study evaluated the influence of flavan-3-ol structure on the production of phenolic ca...
Dietary phenolic compounds are plant derived secondary metabolites, which can be divided into flavon...
Scope: The study evaluates the influence of flavan-3-ol structure on the production of phenolic cata...
With the aim of investigating the potential of flavan-3-ols to influence the growth of intestinal ba...
In vitro batch culture fermentations were conducted with grape seed polyphenols and human faecal mic...
To quantify interindividual differences in the human intestinal microbial metabolism of (-)-epicatec...
Dietary phenolic compounds are plant derived secondary metabolites, which can be divided into flavon...
Consumption of anthocyanins has been related with beneficial health effects. However, bioavailabilit...
Microbial metabolism of the stereoisomers (+)-catechin and (−)-epicatechin was compared by two analy...
Theaflavin-3,3′-digallate (TFDG), a bioactive black tea phenolic, is poorly absorbed in the small in...
We have investigated the bacterial-dependent metabolism of (-)-epicatechin and (+)-catechin using a ...
The aim of the study was to investigate in vitro microbial metabolism of flavan-3-ols [(+)-catechin,...
International audienceFlavan-3-ols are a largely consumed subclass of flavonoids and are involved in...
There is considerable interest in the bioavailability of flavan-3-ols such as tea catechins and thei...
Although the relationship between gut microbiota and flavan-3-ol metabolism differs greatly between ...
Scope: The study evaluated the influence of flavan-3-ol structure on the production of phenolic ca...
Dietary phenolic compounds are plant derived secondary metabolites, which can be divided into flavon...
Scope: The study evaluates the influence of flavan-3-ol structure on the production of phenolic cata...
With the aim of investigating the potential of flavan-3-ols to influence the growth of intestinal ba...
In vitro batch culture fermentations were conducted with grape seed polyphenols and human faecal mic...
To quantify interindividual differences in the human intestinal microbial metabolism of (-)-epicatec...
Dietary phenolic compounds are plant derived secondary metabolites, which can be divided into flavon...
Consumption of anthocyanins has been related with beneficial health effects. However, bioavailabilit...
Microbial metabolism of the stereoisomers (+)-catechin and (−)-epicatechin was compared by two analy...
Theaflavin-3,3′-digallate (TFDG), a bioactive black tea phenolic, is poorly absorbed in the small in...