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Ex vivo fecal fermentation of human ileal fluid collected after raspberry consumption modifies (poly)phenolics and modulates genoprotective effects in colonic epithelial cells

Diets rich in fruit and vegetables are associated with a decreased incidence of colorectal cancer (CRC) due, in part, to the bioactive (poly)phenolic components and their microbiota-mediated metabolites. This study investigated how such compounds, derived from ingested raspberries in the gastrointes...

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Autores principales: Dobani, Sara, Latimer, Cheryl, McDougall, Gordon J., Allwood, J. William, Pereira-Caro, Gema, Moreno-Rojas, José Manuel, Ternan, Nigel G., Pourshahidi, L. Kirsty, Lawther, Roger, Tuohy, Kieran M., Del Rio, Daniele, O'Connor, Gloria, Rowland, Ian, Almutairi, Tahani Mazyad, Crozier, Alan, Gill, Chris I.R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7823050/
https://www.ncbi.nlm.nih.gov/pubmed/33486151
http://dx.doi.org/10.1016/j.redox.2021.101862
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author Dobani, Sara
Latimer, Cheryl
McDougall, Gordon J.
Allwood, J. William
Pereira-Caro, Gema
Moreno-Rojas, José Manuel
Ternan, Nigel G.
Pourshahidi, L. Kirsty
Lawther, Roger
Tuohy, Kieran M.
Del Rio, Daniele
O'Connor, Gloria
Rowland, Ian
Almutairi, Tahani Mazyad
Crozier, Alan
Gill, Chris I.R.
author_facet Dobani, Sara
Latimer, Cheryl
McDougall, Gordon J.
Allwood, J. William
Pereira-Caro, Gema
Moreno-Rojas, José Manuel
Ternan, Nigel G.
Pourshahidi, L. Kirsty
Lawther, Roger
Tuohy, Kieran M.
Del Rio, Daniele
O'Connor, Gloria
Rowland, Ian
Almutairi, Tahani Mazyad
Crozier, Alan
Gill, Chris I.R.
author_sort Dobani, Sara
collection PubMed
description Diets rich in fruit and vegetables are associated with a decreased incidence of colorectal cancer (CRC) due, in part, to the bioactive (poly)phenolic components and their microbiota-mediated metabolites. This study investigated how such compounds, derived from ingested raspberries in the gastrointestinal tract, may exert protective effects by reducing DNA damage. Ileal fluids collected pre- and post-consumption of 300 g of raspberries by ileostomists (n = 11) were subjected to 24 h ex vivo fermentation with fecal inoculum to simulate interaction with colonic microbiota. The impact of fermentation on (poly)phenolics in ileal fluid was determined and the bioactivity of ileal fluids pre- and post fermentation investigated. (Poly)phenolic compounds including sanguiin H-6, sanguiin H-10 and cyanidin-3-O-sophoroside decreased significantly during fermentation while, in contrast, microbial catabolites, including 3-(3′-hydroxyphenyl)propanoic acid, 3-hydroxybenzoic acid and benzoic acid increased significantly. The post-raspberry ileal fermentate from 9 of the 11 ileostomates significantly decreased DNA damage (~30%) in the CCD 841 CoN normal cell line using an oxidative challenge COMET assay. The raspberry ileal fermentates also modulated gene expression of the nuclear factor 2–antioxidant responsive element (Nrf2-ARE) pathway involved in oxidative stress cytoprotection, namely Nrf2, NAD(P)H dehydrogenase, quinone-1 and heme oxygenase-1. Four of the phenolic catabolites were assessed individually, each significantly reducing DNA damage from an oxidative challenge over a physiologically relevant 10–100 μM range. They also induced a differential pattern of expression of key genes in the Nrf2-ARE pathway in CCD 841 CoN cells. The study indicates that the colon-available raspberry (poly)phenols and their microbial-derived catabolites may play a role in protection against CRC in vivo.
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spelling pubmed-78230502021-02-01 Ex vivo fecal fermentation of human ileal fluid collected after raspberry consumption modifies (poly)phenolics and modulates genoprotective effects in colonic epithelial cells Dobani, Sara Latimer, Cheryl McDougall, Gordon J. Allwood, J. William Pereira-Caro, Gema Moreno-Rojas, José Manuel Ternan, Nigel G. Pourshahidi, L. Kirsty Lawther, Roger Tuohy, Kieran M. Del Rio, Daniele O'Connor, Gloria Rowland, Ian Almutairi, Tahani Mazyad Crozier, Alan Gill, Chris I.R. Redox Biol Research Paper Diets rich in fruit and vegetables are associated with a decreased incidence of colorectal cancer (CRC) due, in part, to the bioactive (poly)phenolic components and their microbiota-mediated metabolites. This study investigated how such compounds, derived from ingested raspberries in the gastrointestinal tract, may exert protective effects by reducing DNA damage. Ileal fluids collected pre- and post-consumption of 300 g of raspberries by ileostomists (n = 11) were subjected to 24 h ex vivo fermentation with fecal inoculum to simulate interaction with colonic microbiota. The impact of fermentation on (poly)phenolics in ileal fluid was determined and the bioactivity of ileal fluids pre- and post fermentation investigated. (Poly)phenolic compounds including sanguiin H-6, sanguiin H-10 and cyanidin-3-O-sophoroside decreased significantly during fermentation while, in contrast, microbial catabolites, including 3-(3′-hydroxyphenyl)propanoic acid, 3-hydroxybenzoic acid and benzoic acid increased significantly. The post-raspberry ileal fermentate from 9 of the 11 ileostomates significantly decreased DNA damage (~30%) in the CCD 841 CoN normal cell line using an oxidative challenge COMET assay. The raspberry ileal fermentates also modulated gene expression of the nuclear factor 2–antioxidant responsive element (Nrf2-ARE) pathway involved in oxidative stress cytoprotection, namely Nrf2, NAD(P)H dehydrogenase, quinone-1 and heme oxygenase-1. Four of the phenolic catabolites were assessed individually, each significantly reducing DNA damage from an oxidative challenge over a physiologically relevant 10–100 μM range. They also induced a differential pattern of expression of key genes in the Nrf2-ARE pathway in CCD 841 CoN cells. The study indicates that the colon-available raspberry (poly)phenols and their microbial-derived catabolites may play a role in protection against CRC in vivo. Elsevier 2021-01-12 /pmc/articles/PMC7823050/ /pubmed/33486151 http://dx.doi.org/10.1016/j.redox.2021.101862 Text en © 2021 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Paper
Dobani, Sara
Latimer, Cheryl
McDougall, Gordon J.
Allwood, J. William
Pereira-Caro, Gema
Moreno-Rojas, José Manuel
Ternan, Nigel G.
Pourshahidi, L. Kirsty
Lawther, Roger
Tuohy, Kieran M.
Del Rio, Daniele
O'Connor, Gloria
Rowland, Ian
Almutairi, Tahani Mazyad
Crozier, Alan
Gill, Chris I.R.
Ex vivo fecal fermentation of human ileal fluid collected after raspberry consumption modifies (poly)phenolics and modulates genoprotective effects in colonic epithelial cells
title Ex vivo fecal fermentation of human ileal fluid collected after raspberry consumption modifies (poly)phenolics and modulates genoprotective effects in colonic epithelial cells
title_full Ex vivo fecal fermentation of human ileal fluid collected after raspberry consumption modifies (poly)phenolics and modulates genoprotective effects in colonic epithelial cells
title_fullStr Ex vivo fecal fermentation of human ileal fluid collected after raspberry consumption modifies (poly)phenolics and modulates genoprotective effects in colonic epithelial cells
title_full_unstemmed Ex vivo fecal fermentation of human ileal fluid collected after raspberry consumption modifies (poly)phenolics and modulates genoprotective effects in colonic epithelial cells
title_short Ex vivo fecal fermentation of human ileal fluid collected after raspberry consumption modifies (poly)phenolics and modulates genoprotective effects in colonic epithelial cells
title_sort ex vivo fecal fermentation of human ileal fluid collected after raspberry consumption modifies (poly)phenolics and modulates genoprotective effects in colonic epithelial cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7823050/
https://www.ncbi.nlm.nih.gov/pubmed/33486151
http://dx.doi.org/10.1016/j.redox.2021.101862
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