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Human Milk Oligosaccharide 3′-GL Improves Influenza-Specific Vaccination Responsiveness and Immunity after Deoxynivalenol Exposure in Preclinical Models

Deoxynivalenol (DON), a highly prevalent mycotoxin food contaminant, is known to have immunotoxic effects. In the current study, the potential of dietary interventions with specific mixtures of trans-galactosyl-oligosaccharides (TOS) to alleviate these effects were assessed in a murine influenza vac...

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Autores principales: Toutounchi, Negisa Seyed, Braber, Saskia, Hogenkamp, Astrid, Varasteh, Soheil, Cai, Yang, Wehkamp, Tjalling, Tims, Sebastian, Leusink-Muis, Thea, van Ark, Ingrid, Wiertsema, Selma, Stahl, Bernd, Kraneveld, Aletta D., Garssen, Johan, Folkerts, Gert, van’t Land, Belinda
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8466816/
https://www.ncbi.nlm.nih.gov/pubmed/34579070
http://dx.doi.org/10.3390/nu13093190
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author Toutounchi, Negisa Seyed
Braber, Saskia
Hogenkamp, Astrid
Varasteh, Soheil
Cai, Yang
Wehkamp, Tjalling
Tims, Sebastian
Leusink-Muis, Thea
van Ark, Ingrid
Wiertsema, Selma
Stahl, Bernd
Kraneveld, Aletta D.
Garssen, Johan
Folkerts, Gert
van’t Land, Belinda
author_facet Toutounchi, Negisa Seyed
Braber, Saskia
Hogenkamp, Astrid
Varasteh, Soheil
Cai, Yang
Wehkamp, Tjalling
Tims, Sebastian
Leusink-Muis, Thea
van Ark, Ingrid
Wiertsema, Selma
Stahl, Bernd
Kraneveld, Aletta D.
Garssen, Johan
Folkerts, Gert
van’t Land, Belinda
author_sort Toutounchi, Negisa Seyed
collection PubMed
description Deoxynivalenol (DON), a highly prevalent mycotoxin food contaminant, is known to have immunotoxic effects. In the current study, the potential of dietary interventions with specific mixtures of trans-galactosyl-oligosaccharides (TOS) to alleviate these effects were assessed in a murine influenza vaccination model. Vaccine-specific immune responses were measured in C57Bl/6JOlaHsd mice fed diets containing DON, TOS or a combination, starting 2 weeks before the first vaccination. The direct effects of TOS and its main oligosaccharide, 3′-galactosyl-lactose (3′-GL), on DON-induced damage were studied in Caco-2 cells, as an in vitro model of the intestinal epithelial barrier. Exposure to DON significantly reduced vaccine-specific immune responses and the percentages of Tbet(+) Th1 cells and B cells in the spleen. DON significantly altered epithelial structure and integrity in the ileum and reduced the SCFA levels in the cecum. Adding TOS into DON-containing diets significantly improved vaccine-specific immune responses, restored the immune cell balance in the spleen and increased SCFA concentrations in the cecum. Incubating Caco-2 cells with TOS and 3′-GL in vitro further confirmed their protective effects against DON-induced barrier disruption, supporting immune modulation. Overall, dietary intervention with TOS can attenuate the adverse effects of DON on Th1-mediated immune responses and gut homeostasis. These beneficial properties might be linked to the high levels of 3′-GL in TOS.
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spelling pubmed-84668162021-09-27 Human Milk Oligosaccharide 3′-GL Improves Influenza-Specific Vaccination Responsiveness and Immunity after Deoxynivalenol Exposure in Preclinical Models Toutounchi, Negisa Seyed Braber, Saskia Hogenkamp, Astrid Varasteh, Soheil Cai, Yang Wehkamp, Tjalling Tims, Sebastian Leusink-Muis, Thea van Ark, Ingrid Wiertsema, Selma Stahl, Bernd Kraneveld, Aletta D. Garssen, Johan Folkerts, Gert van’t Land, Belinda Nutrients Article Deoxynivalenol (DON), a highly prevalent mycotoxin food contaminant, is known to have immunotoxic effects. In the current study, the potential of dietary interventions with specific mixtures of trans-galactosyl-oligosaccharides (TOS) to alleviate these effects were assessed in a murine influenza vaccination model. Vaccine-specific immune responses were measured in C57Bl/6JOlaHsd mice fed diets containing DON, TOS or a combination, starting 2 weeks before the first vaccination. The direct effects of TOS and its main oligosaccharide, 3′-galactosyl-lactose (3′-GL), on DON-induced damage were studied in Caco-2 cells, as an in vitro model of the intestinal epithelial barrier. Exposure to DON significantly reduced vaccine-specific immune responses and the percentages of Tbet(+) Th1 cells and B cells in the spleen. DON significantly altered epithelial structure and integrity in the ileum and reduced the SCFA levels in the cecum. Adding TOS into DON-containing diets significantly improved vaccine-specific immune responses, restored the immune cell balance in the spleen and increased SCFA concentrations in the cecum. Incubating Caco-2 cells with TOS and 3′-GL in vitro further confirmed their protective effects against DON-induced barrier disruption, supporting immune modulation. Overall, dietary intervention with TOS can attenuate the adverse effects of DON on Th1-mediated immune responses and gut homeostasis. These beneficial properties might be linked to the high levels of 3′-GL in TOS. MDPI 2021-09-14 /pmc/articles/PMC8466816/ /pubmed/34579070 http://dx.doi.org/10.3390/nu13093190 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
Toutounchi, Negisa Seyed
Braber, Saskia
Hogenkamp, Astrid
Varasteh, Soheil
Cai, Yang
Wehkamp, Tjalling
Tims, Sebastian
Leusink-Muis, Thea
van Ark, Ingrid
Wiertsema, Selma
Stahl, Bernd
Kraneveld, Aletta D.
Garssen, Johan
Folkerts, Gert
van’t Land, Belinda
Human Milk Oligosaccharide 3′-GL Improves Influenza-Specific Vaccination Responsiveness and Immunity after Deoxynivalenol Exposure in Preclinical Models
title Human Milk Oligosaccharide 3′-GL Improves Influenza-Specific Vaccination Responsiveness and Immunity after Deoxynivalenol Exposure in Preclinical Models
title_full Human Milk Oligosaccharide 3′-GL Improves Influenza-Specific Vaccination Responsiveness and Immunity after Deoxynivalenol Exposure in Preclinical Models
title_fullStr Human Milk Oligosaccharide 3′-GL Improves Influenza-Specific Vaccination Responsiveness and Immunity after Deoxynivalenol Exposure in Preclinical Models
title_full_unstemmed Human Milk Oligosaccharide 3′-GL Improves Influenza-Specific Vaccination Responsiveness and Immunity after Deoxynivalenol Exposure in Preclinical Models
title_short Human Milk Oligosaccharide 3′-GL Improves Influenza-Specific Vaccination Responsiveness and Immunity after Deoxynivalenol Exposure in Preclinical Models
title_sort human milk oligosaccharide 3′-gl improves influenza-specific vaccination responsiveness and immunity after deoxynivalenol exposure in preclinical models
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8466816/
https://www.ncbi.nlm.nih.gov/pubmed/34579070
http://dx.doi.org/10.3390/nu13093190
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