Free Radical Research · 2006 · 226 citations · 41 references
Conjugated FormsMicroflora-dependent TransformationFood Bioactive CompoundBiochemistryMedicineGastroenterologyOlive Oil PolyphenolsDetailed InvestigationDigestive TractMetabolomicsMetabolismPharmacologyGastrointestinal TractPolyphenolicsGastrointestinal Peptide HormoneColonic Microflora-dependent Biotransformation
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. However, OL was rapidly degraded by the colonic microflora resulting in the formation of HT. Our study provides additional information regarding the breakdown of complex olive oil polyphenols in the GI tract, in particular the stomach and the large intestine.
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THE DIET AND 15-YEAR DEATH RATE IN THE SEVEN COUNTRIES STUDY
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The small intestine can both absorb and glucuronidate luminal flavonoids
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