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The Effect of Butyrate-Supplemented Parenteral Nutrition on Intestinal Defence Mechanisms and the Parenteral Nutrition-Induced Shift in the Gut Microbiota in the Rat Model

Butyrate produced by the intestinal microbiota is essential for proper functioning of the intestinal immune system. Total dependence on parenteral nutrition (PN) is associated with numerous adverse effects, including severe microbial dysbiosis and loss of important butyrate producers. We hypothesise...

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Autores principales: Jirsova, Zuzana, Heczkova, Marie, Dankova, Helena, Malinska, Hana, Videnska, Petra, Vespalcova, Hana, Micenkova, Lenka, Bartonova, Lenka, Sticova, Eva, Lodererova, Alena, Prefertusová, Lucia, Sekerkova, Alena, Hradecky, Jaromir, Cahova, Monika
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6421034/
https://www.ncbi.nlm.nih.gov/pubmed/30941370
http://dx.doi.org/10.1155/2019/7084734
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author Jirsova, Zuzana
Heczkova, Marie
Dankova, Helena
Malinska, Hana
Videnska, Petra
Vespalcova, Hana
Micenkova, Lenka
Bartonova, Lenka
Sticova, Eva
Lodererova, Alena
Prefertusová, Lucia
Sekerkova, Alena
Hradecky, Jaromir
Cahova, Monika
author_facet Jirsova, Zuzana
Heczkova, Marie
Dankova, Helena
Malinska, Hana
Videnska, Petra
Vespalcova, Hana
Micenkova, Lenka
Bartonova, Lenka
Sticova, Eva
Lodererova, Alena
Prefertusová, Lucia
Sekerkova, Alena
Hradecky, Jaromir
Cahova, Monika
author_sort Jirsova, Zuzana
collection PubMed
description Butyrate produced by the intestinal microbiota is essential for proper functioning of the intestinal immune system. Total dependence on parenteral nutrition (PN) is associated with numerous adverse effects, including severe microbial dysbiosis and loss of important butyrate producers. We hypothesised that a lack of butyrate produced by the gut microbiota may be compensated by its supplementation in PN mixtures. We tested whether i.v. butyrate administration would (a) positively modulate intestinal defence mechanisms and (b) counteract PN-induced dysbiosis. Male Wistar rats were randomised to chow, PN, and PN supplemented with 9 mM butyrate (PN+But) for 12 days. Antimicrobial peptides, mucins, tight junction proteins, and cytokine expression were assessed by RT-qPCR. T-cell subpopulations in mesenteric lymph nodes (MLN) were analysed by flow cytometry. Microbiota composition was assessed in caecum content. Butyrate supplementation resulted in increased expression of tight junction proteins (ZO-1, claudin-7, E-cadherin), antimicrobial peptides (Defa 8, Rd5, RegIIIγ), and lysozyme in the ileal mucosa. Butyrate partially alleviated PN-induced intestinal barrier impairment and normalised IL-4, IL-10, and IgA mRNA expression. PN administration was associated with an increase in Tregs in MLN, which was normalised by butyrate. Butyrate increased the total number of CD4+ and decreased a relative amount of CD8+ memory T cells in MLN. Lack of enteral nutrition and PN administration led to a shift in caecal microbiota composition. Butyrate did not reverse the altered expression of most taxa but did influence the abundance of some potentially beneficial/pathogenic genera, which might contribute to its overall beneficial effect.
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spelling pubmed-64210342019-04-02 The Effect of Butyrate-Supplemented Parenteral Nutrition on Intestinal Defence Mechanisms and the Parenteral Nutrition-Induced Shift in the Gut Microbiota in the Rat Model Jirsova, Zuzana Heczkova, Marie Dankova, Helena Malinska, Hana Videnska, Petra Vespalcova, Hana Micenkova, Lenka Bartonova, Lenka Sticova, Eva Lodererova, Alena Prefertusová, Lucia Sekerkova, Alena Hradecky, Jaromir Cahova, Monika Biomed Res Int Research Article Butyrate produced by the intestinal microbiota is essential for proper functioning of the intestinal immune system. Total dependence on parenteral nutrition (PN) is associated with numerous adverse effects, including severe microbial dysbiosis and loss of important butyrate producers. We hypothesised that a lack of butyrate produced by the gut microbiota may be compensated by its supplementation in PN mixtures. We tested whether i.v. butyrate administration would (a) positively modulate intestinal defence mechanisms and (b) counteract PN-induced dysbiosis. Male Wistar rats were randomised to chow, PN, and PN supplemented with 9 mM butyrate (PN+But) for 12 days. Antimicrobial peptides, mucins, tight junction proteins, and cytokine expression were assessed by RT-qPCR. T-cell subpopulations in mesenteric lymph nodes (MLN) were analysed by flow cytometry. Microbiota composition was assessed in caecum content. Butyrate supplementation resulted in increased expression of tight junction proteins (ZO-1, claudin-7, E-cadherin), antimicrobial peptides (Defa 8, Rd5, RegIIIγ), and lysozyme in the ileal mucosa. Butyrate partially alleviated PN-induced intestinal barrier impairment and normalised IL-4, IL-10, and IgA mRNA expression. PN administration was associated with an increase in Tregs in MLN, which was normalised by butyrate. Butyrate increased the total number of CD4+ and decreased a relative amount of CD8+ memory T cells in MLN. Lack of enteral nutrition and PN administration led to a shift in caecal microbiota composition. Butyrate did not reverse the altered expression of most taxa but did influence the abundance of some potentially beneficial/pathogenic genera, which might contribute to its overall beneficial effect. Hindawi 2019-02-28 /pmc/articles/PMC6421034/ /pubmed/30941370 http://dx.doi.org/10.1155/2019/7084734 Text en Copyright © 2019 Zuzana Jirsova et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Jirsova, Zuzana
Heczkova, Marie
Dankova, Helena
Malinska, Hana
Videnska, Petra
Vespalcova, Hana
Micenkova, Lenka
Bartonova, Lenka
Sticova, Eva
Lodererova, Alena
Prefertusová, Lucia
Sekerkova, Alena
Hradecky, Jaromir
Cahova, Monika
The Effect of Butyrate-Supplemented Parenteral Nutrition on Intestinal Defence Mechanisms and the Parenteral Nutrition-Induced Shift in the Gut Microbiota in the Rat Model
title The Effect of Butyrate-Supplemented Parenteral Nutrition on Intestinal Defence Mechanisms and the Parenteral Nutrition-Induced Shift in the Gut Microbiota in the Rat Model
title_full The Effect of Butyrate-Supplemented Parenteral Nutrition on Intestinal Defence Mechanisms and the Parenteral Nutrition-Induced Shift in the Gut Microbiota in the Rat Model
title_fullStr The Effect of Butyrate-Supplemented Parenteral Nutrition on Intestinal Defence Mechanisms and the Parenteral Nutrition-Induced Shift in the Gut Microbiota in the Rat Model
title_full_unstemmed The Effect of Butyrate-Supplemented Parenteral Nutrition on Intestinal Defence Mechanisms and the Parenteral Nutrition-Induced Shift in the Gut Microbiota in the Rat Model
title_short The Effect of Butyrate-Supplemented Parenteral Nutrition on Intestinal Defence Mechanisms and the Parenteral Nutrition-Induced Shift in the Gut Microbiota in the Rat Model
title_sort effect of butyrate-supplemented parenteral nutrition on intestinal defence mechanisms and the parenteral nutrition-induced shift in the gut microbiota in the rat model
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6421034/
https://www.ncbi.nlm.nih.gov/pubmed/30941370
http://dx.doi.org/10.1155/2019/7084734
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