Abstract We have conducted a detailed investigation into the absorption, metabolism and microflora-dependent transformation of hydroxytyrosol (HT), tyrosol (TYR) and their conjugated forms, such as oleuropein (OL). Conjugated forms underwent rapid hydrolysis under gastric conditions, resulting in significant increases in the amount of free HT and TYR entering the small intestine. Both HT and TYR transferred across human Caco-2 cell monolayers and rat segments of jejunum and ileum and were subject to classic phase I/II biotransformation. The major metabolites identified were an O-methylated derivative of HT, glucuronides of HT and TYR and a novel glutathionylated conjugate of HT. In contrast, there was no absorption of OL in either model. H...
Olive oil phenolic compounds are extensively metabolized into methylated and glucurono- and sulpho-c...
Extra virgin olive oil (EVOO) polyphenols beneficial effects have widely been debated throughout the...
We have recently demonstrated, in humans, the bioavailability of hydroxytyrosol (3,4-dihydroxyphenyl...
Abstract We have conducted a detailed investigation into the absorption, metabolism and microflora-...
We have conducted a detailed investigation into the absorption, metabolism and microflora-dependent ...
Abstract Complex polyphenols present in extravirgin olive oil are not directly absorbed, but underg...
Animal and in vitro studies suggest that olive oil phenols are effective antioxidants. The most abun...
Interest in the in vivo biological activities of olive oil phenolics is rapidly growing, and differe...
Recently, new bioactive compounds were identified in olive oil, lipophenols, which are composed of a...
To study the potential hepatic metabolism of olive oil phenols, human hepatoma HepG2 cells were incu...
This study investigated and compared the absorption, metabolism, and subsequently, the tissue distri...
In the present study, the individual colonic metabolism of the main components of the virgin olive o...
The secoiridoids 3,4-dihydroxyphenylethanol-elenolic acid (3,4-DHPEA-EA) and 3,4-dihydroxyphenyletha...
After the sustained consumption of virgin olive oil (VOO), the unabsorbed native phenols (mainly hyd...
We have been studying the biological activities of olive oil phenols in vitro and in vivo including ...
Olive oil phenolic compounds are extensively metabolized into methylated and glucurono- and sulpho-c...
Extra virgin olive oil (EVOO) polyphenols beneficial effects have widely been debated throughout the...
We have recently demonstrated, in humans, the bioavailability of hydroxytyrosol (3,4-dihydroxyphenyl...
Abstract We have conducted a detailed investigation into the absorption, metabolism and microflora-...
We have conducted a detailed investigation into the absorption, metabolism and microflora-dependent ...
Abstract Complex polyphenols present in extravirgin olive oil are not directly absorbed, but underg...
Animal and in vitro studies suggest that olive oil phenols are effective antioxidants. The most abun...
Interest in the in vivo biological activities of olive oil phenolics is rapidly growing, and differe...
Recently, new bioactive compounds were identified in olive oil, lipophenols, which are composed of a...
To study the potential hepatic metabolism of olive oil phenols, human hepatoma HepG2 cells were incu...
This study investigated and compared the absorption, metabolism, and subsequently, the tissue distri...
In the present study, the individual colonic metabolism of the main components of the virgin olive o...
The secoiridoids 3,4-dihydroxyphenylethanol-elenolic acid (3,4-DHPEA-EA) and 3,4-dihydroxyphenyletha...
After the sustained consumption of virgin olive oil (VOO), the unabsorbed native phenols (mainly hyd...
We have been studying the biological activities of olive oil phenols in vitro and in vivo including ...
Olive oil phenolic compounds are extensively metabolized into methylated and glucurono- and sulpho-c...
Extra virgin olive oil (EVOO) polyphenols beneficial effects have widely been debated throughout the...
We have recently demonstrated, in humans, the bioavailability of hydroxytyrosol (3,4-dihydroxyphenyl...