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In Vitro Metabolism of Six C-Glycosidic Flavonoids from Passiflora incarnata L.

Several medical plants, such as Passiflora incarnata L., contain C-glycosylated flavonoids, which may contribute to their efficacy. Information regarding the bioavailability and metabolism of these compounds is essential, but not sufficiently available. Therefore, the metabolism of the C-glycosylate...

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Autores principales: Tremmel, Martina, Kiermaier, Josef, Heilmann, Jörg
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8234803/
https://www.ncbi.nlm.nih.gov/pubmed/34207335
http://dx.doi.org/10.3390/ijms22126566
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author Tremmel, Martina
Kiermaier, Josef
Heilmann, Jörg
author_facet Tremmel, Martina
Kiermaier, Josef
Heilmann, Jörg
author_sort Tremmel, Martina
collection PubMed
description Several medical plants, such as Passiflora incarnata L., contain C-glycosylated flavonoids, which may contribute to their efficacy. Information regarding the bioavailability and metabolism of these compounds is essential, but not sufficiently available. Therefore, the metabolism of the C-glycosylated flavones orientin, isoorientin, schaftoside, isoschaftoside, vitexin, and isovitexin was investigated using the Caco-2 cell line as an in vitro intestinal and epithelial metabolism model. Isovitexin, orientin, and isoorientin showed broad ranges of phase I and II metabolites containing hydroxylated, methoxylated, and sulfated compounds, whereas schaftoside, isoschaftoside, and vitexin underwent poor metabolism. All metabolites were identified via UHPLC-MS or UHPLC-MS/MS using compound libraries containing all conceivable metabolites. Some structures were confirmed via UHPLC-MS experiments with reference compounds after a cleavage reaction using glucuronidase and sulfatase. Of particular interest is the observed cleavage of the C–C bonds between sugar and aglycone residues in isovitexin, orientin, and isoorientin, resulting in unexpected glucuronidated or sulfated luteolin and apigenin derivatives. These findings indicate that C-glycosidic flavones can be highly metabolized in the intestine. In particular, flavonoids with ortho-dihydroxy groups showed sulfated metabolites. The identified glucuronidated or sulfated aglycones demonstrate that enzymes expressed by Caco-2 cells are able to potentially cleave C–C bonds in vitro.
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spelling pubmed-82348032021-06-27 In Vitro Metabolism of Six C-Glycosidic Flavonoids from Passiflora incarnata L. Tremmel, Martina Kiermaier, Josef Heilmann, Jörg Int J Mol Sci Article Several medical plants, such as Passiflora incarnata L., contain C-glycosylated flavonoids, which may contribute to their efficacy. Information regarding the bioavailability and metabolism of these compounds is essential, but not sufficiently available. Therefore, the metabolism of the C-glycosylated flavones orientin, isoorientin, schaftoside, isoschaftoside, vitexin, and isovitexin was investigated using the Caco-2 cell line as an in vitro intestinal and epithelial metabolism model. Isovitexin, orientin, and isoorientin showed broad ranges of phase I and II metabolites containing hydroxylated, methoxylated, and sulfated compounds, whereas schaftoside, isoschaftoside, and vitexin underwent poor metabolism. All metabolites were identified via UHPLC-MS or UHPLC-MS/MS using compound libraries containing all conceivable metabolites. Some structures were confirmed via UHPLC-MS experiments with reference compounds after a cleavage reaction using glucuronidase and sulfatase. Of particular interest is the observed cleavage of the C–C bonds between sugar and aglycone residues in isovitexin, orientin, and isoorientin, resulting in unexpected glucuronidated or sulfated luteolin and apigenin derivatives. These findings indicate that C-glycosidic flavones can be highly metabolized in the intestine. In particular, flavonoids with ortho-dihydroxy groups showed sulfated metabolites. The identified glucuronidated or sulfated aglycones demonstrate that enzymes expressed by Caco-2 cells are able to potentially cleave C–C bonds in vitro. MDPI 2021-06-18 /pmc/articles/PMC8234803/ /pubmed/34207335 http://dx.doi.org/10.3390/ijms22126566 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tremmel, Martina
Kiermaier, Josef
Heilmann, Jörg
In Vitro Metabolism of Six C-Glycosidic Flavonoids from Passiflora incarnata L.
title In Vitro Metabolism of Six C-Glycosidic Flavonoids from Passiflora incarnata L.
title_full In Vitro Metabolism of Six C-Glycosidic Flavonoids from Passiflora incarnata L.
title_fullStr In Vitro Metabolism of Six C-Glycosidic Flavonoids from Passiflora incarnata L.
title_full_unstemmed In Vitro Metabolism of Six C-Glycosidic Flavonoids from Passiflora incarnata L.
title_short In Vitro Metabolism of Six C-Glycosidic Flavonoids from Passiflora incarnata L.
title_sort in vitro metabolism of six c-glycosidic flavonoids from passiflora incarnata l.
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8234803/
https://www.ncbi.nlm.nih.gov/pubmed/34207335
http://dx.doi.org/10.3390/ijms22126566
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