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Metabolic Fate and Distribution of 2´‐Fucosyllactose: Direct Influence on Gut Microbial Activity but not on Brain

SCOPE: 2´‐Fucosyllactose (2´FL) is an abundant oligosaccharide in human milk. It is hypothesized that its brain enrichment is associated with improved learning. Accumulation of 2´FL in organs, biological fluids, and feces is assessed in wild‐type and germ‐free mice. METHODS AND RESULTS: (13)C‐labell...

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Autores principales: Kuntz, Sabine, Kunz, Clemens, Borsch, Christian, Vazquez, Enrique, Buck, Rachael, Reutzel, Martina, Eckert, Gunter Peter, Rudloff, Silvia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6618057/
https://www.ncbi.nlm.nih.gov/pubmed/31125176
http://dx.doi.org/10.1002/mnfr.201900035
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author Kuntz, Sabine
Kunz, Clemens
Borsch, Christian
Vazquez, Enrique
Buck, Rachael
Reutzel, Martina
Eckert, Gunter Peter
Rudloff, Silvia
author_facet Kuntz, Sabine
Kunz, Clemens
Borsch, Christian
Vazquez, Enrique
Buck, Rachael
Reutzel, Martina
Eckert, Gunter Peter
Rudloff, Silvia
author_sort Kuntz, Sabine
collection PubMed
description SCOPE: 2´‐Fucosyllactose (2´FL) is an abundant oligosaccharide in human milk. It is hypothesized that its brain enrichment is associated with improved learning. Accumulation of 2´FL in organs, biological fluids, and feces is assessed in wild‐type and germ‐free mice. METHODS AND RESULTS: (13)C‐labelled 2´FL is applied to NMRI wild‐type mice intravenously (0.2 g kg(−1)) or orally (1 g kg(−1)), while controls receive saline. Biological samples are collected (0.5–15 h) and (13)C‐enrichment is measured by elemental analysis isotope ratio mass spectrometry (EA‐IRMS). After oral application, 2´FL is primarily eliminated in the feces. (13)C‐enrichment in organs including the brain follows the same pattern as in plasma with a maximum peak after 5 h. However, (13)C‐enrichment is only detected when the (13)C‐2´FL bolus reaches the colon. In contrast, in germ‐free mice, the (13)C‐bolus remains in the intestinal content and is expelled via the feces. Furthermore, intravenously applied (13)C‐2´FL is eliminated via urine; no (13)C‐enrichment of organs is observed, suggesting that intact 2´FL is not retained. CONCLUSIONS: (13)C‐enrichment in brain and other organs after oral application of (13)C‐2´FL in wild‐type mice indicates cleaved fucose or other gut microbial 2´FL metabolites may be incorporated, as opposed to intact 2´FL.
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spelling pubmed-66180572019-07-22 Metabolic Fate and Distribution of 2´‐Fucosyllactose: Direct Influence on Gut Microbial Activity but not on Brain Kuntz, Sabine Kunz, Clemens Borsch, Christian Vazquez, Enrique Buck, Rachael Reutzel, Martina Eckert, Gunter Peter Rudloff, Silvia Mol Nutr Food Res Research Articles SCOPE: 2´‐Fucosyllactose (2´FL) is an abundant oligosaccharide in human milk. It is hypothesized that its brain enrichment is associated with improved learning. Accumulation of 2´FL in organs, biological fluids, and feces is assessed in wild‐type and germ‐free mice. METHODS AND RESULTS: (13)C‐labelled 2´FL is applied to NMRI wild‐type mice intravenously (0.2 g kg(−1)) or orally (1 g kg(−1)), while controls receive saline. Biological samples are collected (0.5–15 h) and (13)C‐enrichment is measured by elemental analysis isotope ratio mass spectrometry (EA‐IRMS). After oral application, 2´FL is primarily eliminated in the feces. (13)C‐enrichment in organs including the brain follows the same pattern as in plasma with a maximum peak after 5 h. However, (13)C‐enrichment is only detected when the (13)C‐2´FL bolus reaches the colon. In contrast, in germ‐free mice, the (13)C‐bolus remains in the intestinal content and is expelled via the feces. Furthermore, intravenously applied (13)C‐2´FL is eliminated via urine; no (13)C‐enrichment of organs is observed, suggesting that intact 2´FL is not retained. CONCLUSIONS: (13)C‐enrichment in brain and other organs after oral application of (13)C‐2´FL in wild‐type mice indicates cleaved fucose or other gut microbial 2´FL metabolites may be incorporated, as opposed to intact 2´FL. John Wiley and Sons Inc. 2019-06-07 2019-07 /pmc/articles/PMC6618057/ /pubmed/31125176 http://dx.doi.org/10.1002/mnfr.201900035 Text en © 2019 The Authors. Published by WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Kuntz, Sabine
Kunz, Clemens
Borsch, Christian
Vazquez, Enrique
Buck, Rachael
Reutzel, Martina
Eckert, Gunter Peter
Rudloff, Silvia
Metabolic Fate and Distribution of 2´‐Fucosyllactose: Direct Influence on Gut Microbial Activity but not on Brain
title Metabolic Fate and Distribution of 2´‐Fucosyllactose: Direct Influence on Gut Microbial Activity but not on Brain
title_full Metabolic Fate and Distribution of 2´‐Fucosyllactose: Direct Influence on Gut Microbial Activity but not on Brain
title_fullStr Metabolic Fate and Distribution of 2´‐Fucosyllactose: Direct Influence on Gut Microbial Activity but not on Brain
title_full_unstemmed Metabolic Fate and Distribution of 2´‐Fucosyllactose: Direct Influence on Gut Microbial Activity but not on Brain
title_short Metabolic Fate and Distribution of 2´‐Fucosyllactose: Direct Influence on Gut Microbial Activity but not on Brain
title_sort metabolic fate and distribution of 2´‐fucosyllactose: direct influence on gut microbial activity but not on brain
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6618057/
https://www.ncbi.nlm.nih.gov/pubmed/31125176
http://dx.doi.org/10.1002/mnfr.201900035
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