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Akkermansia muciniphila exacerbates food allergy in fibre-deprived mice.
Parrish, Amy; Boudaud, Marie; Grant, Erica T; Willieme, Stéphanie; Neumann, Mareike; Wolter, Mathis; Craig, Sophie Z; De Sciscio, Alessandro; Cosma, Antonio; Hunewald, Oliver; Ollert, Markus; Desai, Mahesh S.
Afiliação
  • Parrish A; Department of Infection and Immunity, Luxembourg Institute of Health, Esch-sur-Alzette, Luxembourg.
  • Boudaud M; Faculty of Science, Technology and Medicine, University of Luxembourg, Esch-sur-Alzette, Luxembourg.
  • Grant ET; Department of Infection and Immunity, Luxembourg Institute of Health, Esch-sur-Alzette, Luxembourg.
  • Willieme S; Department of Infection and Immunity, Luxembourg Institute of Health, Esch-sur-Alzette, Luxembourg.
  • Neumann M; Faculty of Science, Technology and Medicine, University of Luxembourg, Esch-sur-Alzette, Luxembourg.
  • Wolter M; Department of Infection and Immunity, Luxembourg Institute of Health, Esch-sur-Alzette, Luxembourg.
  • Craig SZ; Department of Infection and Immunity, Luxembourg Institute of Health, Esch-sur-Alzette, Luxembourg.
  • De Sciscio A; Faculty of Science, Technology and Medicine, University of Luxembourg, Esch-sur-Alzette, Luxembourg.
  • Cosma A; Department of Infection and Immunity, Luxembourg Institute of Health, Esch-sur-Alzette, Luxembourg.
  • Hunewald O; Faculty of Science, Technology and Medicine, University of Luxembourg, Esch-sur-Alzette, Luxembourg.
  • Ollert M; Department of Infection and Immunity, Luxembourg Institute of Health, Esch-sur-Alzette, Luxembourg.
  • Desai MS; Faculty of Science, Technology and Medicine, University of Luxembourg, Esch-sur-Alzette, Luxembourg.
Nat Microbiol ; 8(10): 1863-1879, 2023 10.
Article em En | MEDLINE | ID: mdl-37696941
Alterations in the gut microbiome, including diet-driven changes, are linked to the rising prevalence of food allergy. However, little is known about how specific gut bacteria trigger the breakdown of oral tolerance. Here we show that depriving specific-pathogen-free mice of dietary fibre leads to a gut microbiota signature with increases in the mucin-degrading bacterium Akkermansia muciniphila. This signature is associated with intestinal barrier dysfunction, increased expression of type 1 and 2 cytokines and IgE-coated commensals in the colon, which result in an exacerbated allergic reaction to food allergens, ovalbumin and peanut. To demonstrate the causal role of A. muciniphila, we employed a tractable synthetic human gut microbiota in gnotobiotic mice. The presence of A. muciniphila within the microbiota, combined with fibre deprivation, resulted in stronger anti-commensal IgE coating and innate type-2 immune responses, which worsened symptoms of food allergy. Our study provides important insights into how gut microbes can regulate immune pathways of food allergy in a diet-dependent manner.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Verrucomicrobia / Hipersensibilidade Alimentar Idioma: En Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Luxemburgo

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Verrucomicrobia / Hipersensibilidade Alimentar Idioma: En Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Luxemburgo