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Human neutrophil IL1β directs intestinal epithelial cell extrusion during Salmonella infection

Infection of the human gut by Salmonella enterica Typhimurium (STM) results in a localized inflammatory disease that is not mimicked in murine infections. To determine mechanisms by which neutrophils, as early responders to bacterial challenge, direct inflammatory programming of human intestinal epi...

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Autores principales: Lawrence, Anna-Lisa E., Berger, Ryan P., Hill, David R., Huang, Sha, Yadagiri, Veda K., Bons, Brooke, Fields, Courtney, Sule, Gautam J., Knight, Jason S., Wobus, Christiane E., Spence, Jason R., Young, Vincent B., O’Riordan, Mary X., Abuaita, Basel H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9578578/
https://www.ncbi.nlm.nih.gov/pubmed/36191054
http://dx.doi.org/10.1371/journal.ppat.1010855
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author Lawrence, Anna-Lisa E.
Berger, Ryan P.
Hill, David R.
Huang, Sha
Yadagiri, Veda K.
Bons, Brooke
Fields, Courtney
Sule, Gautam J.
Knight, Jason S.
Wobus, Christiane E.
Spence, Jason R.
Young, Vincent B.
O’Riordan, Mary X.
Abuaita, Basel H.
author_facet Lawrence, Anna-Lisa E.
Berger, Ryan P.
Hill, David R.
Huang, Sha
Yadagiri, Veda K.
Bons, Brooke
Fields, Courtney
Sule, Gautam J.
Knight, Jason S.
Wobus, Christiane E.
Spence, Jason R.
Young, Vincent B.
O’Riordan, Mary X.
Abuaita, Basel H.
author_sort Lawrence, Anna-Lisa E.
collection PubMed
description Infection of the human gut by Salmonella enterica Typhimurium (STM) results in a localized inflammatory disease that is not mimicked in murine infections. To determine mechanisms by which neutrophils, as early responders to bacterial challenge, direct inflammatory programming of human intestinal epithelium, we established a multi-component human intestinal organoid (HIO) model of STM infection. HIOs were micro-injected with STM and seeded with primary human polymorphonuclear leukocytes (PMN-HIOs). PMNs did not significantly alter luminal colonization of Salmonella, but their presence reduced intraepithelial bacterial burden. Adding PMNs to infected HIOs resulted in substantial accumulation of shed TUNEL(+) epithelial cells that was driven by PMN Caspase-1 activity. Inhibition of Caspases-1, -3 or -4 abrogated epithelial cell death and extrusion in the infected PMN-HIOs but only Caspase-1 inhibition significantly increased bacterial burden in the PMN-HIO epithelium. Thus, PMNs promote cell death in human intestinal epithelial cells through multiple caspases as a protective response to infection. IL-1β was necessary and sufficient to induce cell shedding in the infected HIOs. These data support a critical innate immune function for human neutrophils in amplifying cell death and extrusion of human epithelial cells from the Salmonella-infected intestinal monolayer.
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spelling pubmed-95785782022-10-19 Human neutrophil IL1β directs intestinal epithelial cell extrusion during Salmonella infection Lawrence, Anna-Lisa E. Berger, Ryan P. Hill, David R. Huang, Sha Yadagiri, Veda K. Bons, Brooke Fields, Courtney Sule, Gautam J. Knight, Jason S. Wobus, Christiane E. Spence, Jason R. Young, Vincent B. O’Riordan, Mary X. Abuaita, Basel H. PLoS Pathog Research Article Infection of the human gut by Salmonella enterica Typhimurium (STM) results in a localized inflammatory disease that is not mimicked in murine infections. To determine mechanisms by which neutrophils, as early responders to bacterial challenge, direct inflammatory programming of human intestinal epithelium, we established a multi-component human intestinal organoid (HIO) model of STM infection. HIOs were micro-injected with STM and seeded with primary human polymorphonuclear leukocytes (PMN-HIOs). PMNs did not significantly alter luminal colonization of Salmonella, but their presence reduced intraepithelial bacterial burden. Adding PMNs to infected HIOs resulted in substantial accumulation of shed TUNEL(+) epithelial cells that was driven by PMN Caspase-1 activity. Inhibition of Caspases-1, -3 or -4 abrogated epithelial cell death and extrusion in the infected PMN-HIOs but only Caspase-1 inhibition significantly increased bacterial burden in the PMN-HIO epithelium. Thus, PMNs promote cell death in human intestinal epithelial cells through multiple caspases as a protective response to infection. IL-1β was necessary and sufficient to induce cell shedding in the infected HIOs. These data support a critical innate immune function for human neutrophils in amplifying cell death and extrusion of human epithelial cells from the Salmonella-infected intestinal monolayer. Public Library of Science 2022-10-03 /pmc/articles/PMC9578578/ /pubmed/36191054 http://dx.doi.org/10.1371/journal.ppat.1010855 Text en © 2022 Lawrence et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Lawrence, Anna-Lisa E.
Berger, Ryan P.
Hill, David R.
Huang, Sha
Yadagiri, Veda K.
Bons, Brooke
Fields, Courtney
Sule, Gautam J.
Knight, Jason S.
Wobus, Christiane E.
Spence, Jason R.
Young, Vincent B.
O’Riordan, Mary X.
Abuaita, Basel H.
Human neutrophil IL1β directs intestinal epithelial cell extrusion during Salmonella infection
title Human neutrophil IL1β directs intestinal epithelial cell extrusion during Salmonella infection
title_full Human neutrophil IL1β directs intestinal epithelial cell extrusion during Salmonella infection
title_fullStr Human neutrophil IL1β directs intestinal epithelial cell extrusion during Salmonella infection
title_full_unstemmed Human neutrophil IL1β directs intestinal epithelial cell extrusion during Salmonella infection
title_short Human neutrophil IL1β directs intestinal epithelial cell extrusion during Salmonella infection
title_sort human neutrophil il1β directs intestinal epithelial cell extrusion during salmonella infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9578578/
https://www.ncbi.nlm.nih.gov/pubmed/36191054
http://dx.doi.org/10.1371/journal.ppat.1010855
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