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An acetate‐yielding diet imprints an immune and anti‐microbial programme against enteric infection

OBJECTIVES: During gastrointestinal infection, dysbiosis can result in decreased production of microbially derived short‐chain fatty acids (SCFAs). In response to the presence of intestinal pathogens, we examined whether an engineered acetate‐ or butyrate‐releasing diet can rectify the deficiency of...

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Autores principales: Yap, Yu Anne, McLeod, Keiran H, McKenzie, Craig I, Gavin, Patrick G, Davalos‐Salas, Mercedes, Richards, James L, Moore, Robert J, Lockett, Trevor J, Clarke, Julie M, Eng, Vik Ven, Pearson, Jaclyn S, Hamilton‐Williams, Emma E, Mackay, Charles R, Mariño, Eliana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7809703/
https://www.ncbi.nlm.nih.gov/pubmed/33489123
http://dx.doi.org/10.1002/cti2.1233
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author Yap, Yu Anne
McLeod, Keiran H
McKenzie, Craig I
Gavin, Patrick G
Davalos‐Salas, Mercedes
Richards, James L
Moore, Robert J
Lockett, Trevor J
Clarke, Julie M
Eng, Vik Ven
Pearson, Jaclyn S
Hamilton‐Williams, Emma E
Mackay, Charles R
Mariño, Eliana
author_facet Yap, Yu Anne
McLeod, Keiran H
McKenzie, Craig I
Gavin, Patrick G
Davalos‐Salas, Mercedes
Richards, James L
Moore, Robert J
Lockett, Trevor J
Clarke, Julie M
Eng, Vik Ven
Pearson, Jaclyn S
Hamilton‐Williams, Emma E
Mackay, Charles R
Mariño, Eliana
author_sort Yap, Yu Anne
collection PubMed
description OBJECTIVES: During gastrointestinal infection, dysbiosis can result in decreased production of microbially derived short‐chain fatty acids (SCFAs). In response to the presence of intestinal pathogens, we examined whether an engineered acetate‐ or butyrate‐releasing diet can rectify the deficiency of SCFAs and lead to the resolution of enteric infection. METHODS: We tested whether a high acetate‐ or butyrate‐producing diet (HAMSA or HAMSB, respectively) condition Citrobacter rodentium infection in mice and assess its impact on host‐microbiota interactions. We analysed the adaptive and innate immune responses, changes in gut microbiome function, epithelial barrier function and the molecular mechanism via metabolite sensing G protein‐coupled receptor 43 (GPR43) and IL‐22 expression. RESULTS: HAMSA diet rectified the deficiency in acetate production and protected against enteric infection. Increased SCFAs affect the expression of pathogen virulence genes. HAMSA diet promoted compositional and functional changes in the gut microbiota during infection similar to healthy microbiota from non‐infected mice. Bacterial changes were evidenced by the production of proteins involved in acetate utilisation, starch and sugar degradation, amino acid biosynthesis, carbohydrate transport and metabolism. HAMSA diet also induced changes in host proteins critical in glycolysis, wound healing such as GPX1 and epithelial architecture such as EZR1 and PFN1. Dietary acetate assisted in rapid epithelial repair, as shown by increased colonic Muc‐2, Il‐22, and anti‐microbial peptides. We found that acetate increased numbers of colonic IL‐22 producing TCRαβ(+)CD8αβ(+) and TCRγδ(+)CD8αα(+) intraepithelial lymphocytes expressing GPR43. CONCLUSION: HAMSA diet may be an effective therapeutic approach for fighting inflammation and enteric infections and offer a safe alternative that may impact on human health.
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spelling pubmed-78097032021-01-22 An acetate‐yielding diet imprints an immune and anti‐microbial programme against enteric infection Yap, Yu Anne McLeod, Keiran H McKenzie, Craig I Gavin, Patrick G Davalos‐Salas, Mercedes Richards, James L Moore, Robert J Lockett, Trevor J Clarke, Julie M Eng, Vik Ven Pearson, Jaclyn S Hamilton‐Williams, Emma E Mackay, Charles R Mariño, Eliana Clin Transl Immunology Original Articles OBJECTIVES: During gastrointestinal infection, dysbiosis can result in decreased production of microbially derived short‐chain fatty acids (SCFAs). In response to the presence of intestinal pathogens, we examined whether an engineered acetate‐ or butyrate‐releasing diet can rectify the deficiency of SCFAs and lead to the resolution of enteric infection. METHODS: We tested whether a high acetate‐ or butyrate‐producing diet (HAMSA or HAMSB, respectively) condition Citrobacter rodentium infection in mice and assess its impact on host‐microbiota interactions. We analysed the adaptive and innate immune responses, changes in gut microbiome function, epithelial barrier function and the molecular mechanism via metabolite sensing G protein‐coupled receptor 43 (GPR43) and IL‐22 expression. RESULTS: HAMSA diet rectified the deficiency in acetate production and protected against enteric infection. Increased SCFAs affect the expression of pathogen virulence genes. HAMSA diet promoted compositional and functional changes in the gut microbiota during infection similar to healthy microbiota from non‐infected mice. Bacterial changes were evidenced by the production of proteins involved in acetate utilisation, starch and sugar degradation, amino acid biosynthesis, carbohydrate transport and metabolism. HAMSA diet also induced changes in host proteins critical in glycolysis, wound healing such as GPX1 and epithelial architecture such as EZR1 and PFN1. Dietary acetate assisted in rapid epithelial repair, as shown by increased colonic Muc‐2, Il‐22, and anti‐microbial peptides. We found that acetate increased numbers of colonic IL‐22 producing TCRαβ(+)CD8αβ(+) and TCRγδ(+)CD8αα(+) intraepithelial lymphocytes expressing GPR43. CONCLUSION: HAMSA diet may be an effective therapeutic approach for fighting inflammation and enteric infections and offer a safe alternative that may impact on human health. John Wiley and Sons Inc. 2021-01-15 /pmc/articles/PMC7809703/ /pubmed/33489123 http://dx.doi.org/10.1002/cti2.1233 Text en © 2021 The Authors. Clinical & Translational Immunology published by John Wiley & Sons Australia, Ltd on behalf of Australian and New Zealand Society for Immunology, Inc. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Original Articles
Yap, Yu Anne
McLeod, Keiran H
McKenzie, Craig I
Gavin, Patrick G
Davalos‐Salas, Mercedes
Richards, James L
Moore, Robert J
Lockett, Trevor J
Clarke, Julie M
Eng, Vik Ven
Pearson, Jaclyn S
Hamilton‐Williams, Emma E
Mackay, Charles R
Mariño, Eliana
An acetate‐yielding diet imprints an immune and anti‐microbial programme against enteric infection
title An acetate‐yielding diet imprints an immune and anti‐microbial programme against enteric infection
title_full An acetate‐yielding diet imprints an immune and anti‐microbial programme against enteric infection
title_fullStr An acetate‐yielding diet imprints an immune and anti‐microbial programme against enteric infection
title_full_unstemmed An acetate‐yielding diet imprints an immune and anti‐microbial programme against enteric infection
title_short An acetate‐yielding diet imprints an immune and anti‐microbial programme against enteric infection
title_sort acetate‐yielding diet imprints an immune and anti‐microbial programme against enteric infection
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7809703/
https://www.ncbi.nlm.nih.gov/pubmed/33489123
http://dx.doi.org/10.1002/cti2.1233
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