Literature DB >> 27346351

Microbiota-Regulated IL-25 Increases Eosinophil Number to Provide Protection during Clostridium difficile Infection.

Erica L Buonomo1, Carrie A Cowardin1, Madeline G Wilson1, Mahmoud M Saleh1, Patcharin Pramoonjago2, William A Petri3.   

Abstract

Clostridium difficile infection (CDI) is the most common cause of hospital-acquired infection in the United States. Host susceptibility and the severity of infection are influenced by disruption of the microbiota and the immune response. However, how the microbiota regulate immune responses to mediate CDI outcome remains unclear. Here, we have investigated the role of the microbiota-linked cytokine IL-25 during infection. Intestinal IL-25 was suppressed during CDI in humans and mice. Restoration of IL-25 reduced CDI-associated mortality and tissue pathology even though equivalent levels of C. difficile bacteria and toxin remained in the gut. IL-25 protection was mediated by gut eosinophils, as demonstrated by an increase in intestinal eosinophils and a loss of IL-25 protection upon eosinophil depletion. These findings support a mechanism whereby the induction of IL-25-mediated eosinophilia can reduce host mortality during active CDI. This work may provide targets for future development of microbial or immune-based therapies.
Copyright © 2016 The Author(s). Published by Elsevier Inc. All rights reserved.

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Year:  2016        PMID: 27346351      PMCID: PMC4945404          DOI: 10.1016/j.celrep.2016.06.007

Source DB:  PubMed          Journal:  Cell Rep            Impact factor:   9.423


  46 in total

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2.  Human Clostridium difficile infection: inhibition of NHE3 and microbiota profile.

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3.  Interleukin-17B Antagonizes Interleukin-25-Mediated Mucosal Inflammation.

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Review 4.  Host recognition of Clostridium difficile and the innate immune response.

Authors:  Carrie A Cowardin; William A Petri
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10.  Eosinophils from Murine Lamina Propria Induce Differentiation of Naïve T Cells into Regulatory T Cells via TGF-β1 and Retinoic Acid.

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Review 1.  Considering the Immune System during Fecal Microbiota Transplantation for Clostridioides difficile Infection.

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Review 5.  The Inflammasome and Type-2 Immunity in Clostridium difficile Infection.

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Review 6.  Intestinal microbiota and the immune system in metabolic diseases.

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Review 7.  Deciphering the role of eosinophils in solid organ transplantation.

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Review 8.  Type 3 Immunity during Clostridioides difficile Infection: Too Much of a Good Thing?

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9.  Aging Dampens the Intestinal Innate Immune Response during Severe Clostridioides difficile Infection and Is Associated with Altered Cytokine Levels and Granulocyte Mobilization.

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10.  Impact of eosinophil-peroxidase (EPX) deficiency on eosinophil structure and function in mouse airways.

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