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A Fermented Milk Matrix Containing Postbiotics Supports Th1- and Th17-Type Immunity In Vitro and Modulates the Influenza-Specific Vaccination Response In Vivo in Association with Altered Serum Galectin Ratios

During a specific milk fermentation process with Bifidobacterium breve C50 and Streptococcus thermophilus 065 (Lactofidus(TM)), postbiotics with possible immunomodulatory properties are produced. We investigated the effects of this fermentation product (FP) in vitro using a model that allows crossta...

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Autores principales: Ayechu-Muruzabal, Veronica, Xiao, Ling, Wehkamp, Tjalling, van Ark, Ingrid, Hoogendoorn, Elisabeth J., Leusink-Muis, Thea, Folkerts, Gert, Garssen, Johan, Willemsen, Linette E. M., 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/PMC7998404/
https://www.ncbi.nlm.nih.gov/pubmed/33805597
http://dx.doi.org/10.3390/vaccines9030254
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author Ayechu-Muruzabal, Veronica
Xiao, Ling
Wehkamp, Tjalling
van Ark, Ingrid
Hoogendoorn, Elisabeth J.
Leusink-Muis, Thea
Folkerts, Gert
Garssen, Johan
Willemsen, Linette E. M.
van’t Land, Belinda
author_facet Ayechu-Muruzabal, Veronica
Xiao, Ling
Wehkamp, Tjalling
van Ark, Ingrid
Hoogendoorn, Elisabeth J.
Leusink-Muis, Thea
Folkerts, Gert
Garssen, Johan
Willemsen, Linette E. M.
van’t Land, Belinda
author_sort Ayechu-Muruzabal, Veronica
collection PubMed
description During a specific milk fermentation process with Bifidobacterium breve C50 and Streptococcus thermophilus 065 (Lactofidus(TM)), postbiotics with possible immunomodulatory properties are produced. We investigated the effects of this fermentation product (FP) in vitro using a model that allows crosstalk between intestinal epithelial (IEC) and immune cells. IECs were exposed to FP and αCD3/CD28-activated peripheral blood mononuclear cells after which the mediator secretion was measured. Additionally, using a murine influenza vaccination model, immune development was assessed. Mice were fed an AIN93G diet containing FP or lactose as control. Vaccine-specific immunity was measured as delayed-type hypersensitivity (DTH) and correlated to intestinal and systemic immunomodulation levels. In vitro, exposure to FP enhanced IFNγ, TNFα and IL-17A concentrations. Moreover, IEC-derived galectin-3/galectin-9 and galectin-4/galectin-9 ratios were increased. In vivo, dietary intervention with FP increased vaccine-specific DTH responses as compared to the lactose-receiving group. Although no effects on humoral immunity and vaccine-specific T-cell responses were detected, an enhanced systemic serum galectin-3/galectin-9 and galectin-4/galectin-9 ratio correlated with a shift in RORγ (Th17) mRNA expression over regulatory TGFβ1 in the ileum. This was also positively correlated with the increased DTH response. These results indicate that FP can enhance epithelial galectin-3 and -4 over galectin-9 release, and boost adaptive immunity by promoting Th1- and Th17-type cytokines under inflammatory conditions in vitro. Similar variations in galectin and immune balance were observed in the vaccination model, where FP improved the influenza-specific DTH response.
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spelling pubmed-79984042021-03-28 A Fermented Milk Matrix Containing Postbiotics Supports Th1- and Th17-Type Immunity In Vitro and Modulates the Influenza-Specific Vaccination Response In Vivo in Association with Altered Serum Galectin Ratios Ayechu-Muruzabal, Veronica Xiao, Ling Wehkamp, Tjalling van Ark, Ingrid Hoogendoorn, Elisabeth J. Leusink-Muis, Thea Folkerts, Gert Garssen, Johan Willemsen, Linette E. M. van’t Land, Belinda Vaccines (Basel) Article During a specific milk fermentation process with Bifidobacterium breve C50 and Streptococcus thermophilus 065 (Lactofidus(TM)), postbiotics with possible immunomodulatory properties are produced. We investigated the effects of this fermentation product (FP) in vitro using a model that allows crosstalk between intestinal epithelial (IEC) and immune cells. IECs were exposed to FP and αCD3/CD28-activated peripheral blood mononuclear cells after which the mediator secretion was measured. Additionally, using a murine influenza vaccination model, immune development was assessed. Mice were fed an AIN93G diet containing FP or lactose as control. Vaccine-specific immunity was measured as delayed-type hypersensitivity (DTH) and correlated to intestinal and systemic immunomodulation levels. In vitro, exposure to FP enhanced IFNγ, TNFα and IL-17A concentrations. Moreover, IEC-derived galectin-3/galectin-9 and galectin-4/galectin-9 ratios were increased. In vivo, dietary intervention with FP increased vaccine-specific DTH responses as compared to the lactose-receiving group. Although no effects on humoral immunity and vaccine-specific T-cell responses were detected, an enhanced systemic serum galectin-3/galectin-9 and galectin-4/galectin-9 ratio correlated with a shift in RORγ (Th17) mRNA expression over regulatory TGFβ1 in the ileum. This was also positively correlated with the increased DTH response. These results indicate that FP can enhance epithelial galectin-3 and -4 over galectin-9 release, and boost adaptive immunity by promoting Th1- and Th17-type cytokines under inflammatory conditions in vitro. Similar variations in galectin and immune balance were observed in the vaccination model, where FP improved the influenza-specific DTH response. MDPI 2021-03-13 /pmc/articles/PMC7998404/ /pubmed/33805597 http://dx.doi.org/10.3390/vaccines9030254 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 (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
Ayechu-Muruzabal, Veronica
Xiao, Ling
Wehkamp, Tjalling
van Ark, Ingrid
Hoogendoorn, Elisabeth J.
Leusink-Muis, Thea
Folkerts, Gert
Garssen, Johan
Willemsen, Linette E. M.
van’t Land, Belinda
A Fermented Milk Matrix Containing Postbiotics Supports Th1- and Th17-Type Immunity In Vitro and Modulates the Influenza-Specific Vaccination Response In Vivo in Association with Altered Serum Galectin Ratios
title A Fermented Milk Matrix Containing Postbiotics Supports Th1- and Th17-Type Immunity In Vitro and Modulates the Influenza-Specific Vaccination Response In Vivo in Association with Altered Serum Galectin Ratios
title_full A Fermented Milk Matrix Containing Postbiotics Supports Th1- and Th17-Type Immunity In Vitro and Modulates the Influenza-Specific Vaccination Response In Vivo in Association with Altered Serum Galectin Ratios
title_fullStr A Fermented Milk Matrix Containing Postbiotics Supports Th1- and Th17-Type Immunity In Vitro and Modulates the Influenza-Specific Vaccination Response In Vivo in Association with Altered Serum Galectin Ratios
title_full_unstemmed A Fermented Milk Matrix Containing Postbiotics Supports Th1- and Th17-Type Immunity In Vitro and Modulates the Influenza-Specific Vaccination Response In Vivo in Association with Altered Serum Galectin Ratios
title_short A Fermented Milk Matrix Containing Postbiotics Supports Th1- and Th17-Type Immunity In Vitro and Modulates the Influenza-Specific Vaccination Response In Vivo in Association with Altered Serum Galectin Ratios
title_sort fermented milk matrix containing postbiotics supports th1- and th17-type immunity in vitro and modulates the influenza-specific vaccination response in vivo in association with altered serum galectin ratios
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7998404/
https://www.ncbi.nlm.nih.gov/pubmed/33805597
http://dx.doi.org/10.3390/vaccines9030254
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