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Depletion of Dendritic Cells Enhances Innate Anti-Bacterial Host Defense through Modulation of Phagocyte Homeostasis
Dendritic cells (DCs) as professional antigen-presenting cells play an important role in the initiation and modulation of the adaptive immune response. However, their role in the innate immune response against bacterial infections is not completely defined. Here we have analyzed the role of DCs and...
Autores principales: | , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2012
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3285606/ https://www.ncbi.nlm.nih.gov/pubmed/22383883 http://dx.doi.org/10.1371/journal.ppat.1002552 |
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author | Autenrieth, Stella E. Warnke, Philipp Wabnitz, Guido H. Lucero Estrada, Cecilia Pasquevich, Karina A. Drechsler, Doreen Günter, Manina Hochweller, Kristin Novakovic, Ana Beer-Hammer, Sandra Samstag, Yvonne Hämmerling, Günter J. Garbi, Natalio Autenrieth, Ingo B. |
author_facet | Autenrieth, Stella E. Warnke, Philipp Wabnitz, Guido H. Lucero Estrada, Cecilia Pasquevich, Karina A. Drechsler, Doreen Günter, Manina Hochweller, Kristin Novakovic, Ana Beer-Hammer, Sandra Samstag, Yvonne Hämmerling, Günter J. Garbi, Natalio Autenrieth, Ingo B. |
author_sort | Autenrieth, Stella E. |
collection | PubMed |
description | Dendritic cells (DCs) as professional antigen-presenting cells play an important role in the initiation and modulation of the adaptive immune response. However, their role in the innate immune response against bacterial infections is not completely defined. Here we have analyzed the role of DCs and their impact on the innate anti-bacterial host defense in an experimental infection model of Yersinia enterocolitica (Ye). We used CD11c-diphtheria toxin (DT) mice to deplete DCs prior to severe infection with Ye. DC depletion significantly increased animal survival after Ye infection. The bacterial load in the spleen of DC-depleted mice was significantly lower than that of control mice throughout the infection. DC depletion was accompanied by an increase in the serum levels of CXCL1, G-CSF, IL-1α, and CCL2 and an increase in the numbers of splenic phagocytes. Functionally, splenocytes from DC-depleted mice exhibited an increased bacterial killing capacity compared to splenocytes from control mice. Cellular studies further showed that this was due to an increased production of reactive oxygen species (ROS) by neutrophils. Adoptive transfer of neutrophils from DC-depleted mice into control mice prior to Ye infection reduced the bacterial load to the level of Ye-infected DC-depleted mice, suggesting that the increased number of phagocytes with additional ROS production account for the decreased bacterial load. Furthermore, after incubation with serum from DC-depleted mice splenocytes from control mice increased their bacterial killing capacity, most likely due to enhanced ROS production by neutrophils, indicating that serum factors from DC-depleted mice account for this effect. In summary, we could show that DC depletion triggers phagocyte accumulation in the spleen and enhances their anti-bacterial killing capacity upon bacterial infection. |
format | Online Article Text |
id | pubmed-3285606 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2012 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-32856062012-03-01 Depletion of Dendritic Cells Enhances Innate Anti-Bacterial Host Defense through Modulation of Phagocyte Homeostasis Autenrieth, Stella E. Warnke, Philipp Wabnitz, Guido H. Lucero Estrada, Cecilia Pasquevich, Karina A. Drechsler, Doreen Günter, Manina Hochweller, Kristin Novakovic, Ana Beer-Hammer, Sandra Samstag, Yvonne Hämmerling, Günter J. Garbi, Natalio Autenrieth, Ingo B. PLoS Pathog Research Article Dendritic cells (DCs) as professional antigen-presenting cells play an important role in the initiation and modulation of the adaptive immune response. However, their role in the innate immune response against bacterial infections is not completely defined. Here we have analyzed the role of DCs and their impact on the innate anti-bacterial host defense in an experimental infection model of Yersinia enterocolitica (Ye). We used CD11c-diphtheria toxin (DT) mice to deplete DCs prior to severe infection with Ye. DC depletion significantly increased animal survival after Ye infection. The bacterial load in the spleen of DC-depleted mice was significantly lower than that of control mice throughout the infection. DC depletion was accompanied by an increase in the serum levels of CXCL1, G-CSF, IL-1α, and CCL2 and an increase in the numbers of splenic phagocytes. Functionally, splenocytes from DC-depleted mice exhibited an increased bacterial killing capacity compared to splenocytes from control mice. Cellular studies further showed that this was due to an increased production of reactive oxygen species (ROS) by neutrophils. Adoptive transfer of neutrophils from DC-depleted mice into control mice prior to Ye infection reduced the bacterial load to the level of Ye-infected DC-depleted mice, suggesting that the increased number of phagocytes with additional ROS production account for the decreased bacterial load. Furthermore, after incubation with serum from DC-depleted mice splenocytes from control mice increased their bacterial killing capacity, most likely due to enhanced ROS production by neutrophils, indicating that serum factors from DC-depleted mice account for this effect. In summary, we could show that DC depletion triggers phagocyte accumulation in the spleen and enhances their anti-bacterial killing capacity upon bacterial infection. Public Library of Science 2012-02-23 /pmc/articles/PMC3285606/ /pubmed/22383883 http://dx.doi.org/10.1371/journal.ppat.1002552 Text en Autenrieth et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited. |
spellingShingle | Research Article Autenrieth, Stella E. Warnke, Philipp Wabnitz, Guido H. Lucero Estrada, Cecilia Pasquevich, Karina A. Drechsler, Doreen Günter, Manina Hochweller, Kristin Novakovic, Ana Beer-Hammer, Sandra Samstag, Yvonne Hämmerling, Günter J. Garbi, Natalio Autenrieth, Ingo B. Depletion of Dendritic Cells Enhances Innate Anti-Bacterial Host Defense through Modulation of Phagocyte Homeostasis |
title | Depletion of Dendritic Cells Enhances Innate Anti-Bacterial Host Defense through Modulation of Phagocyte Homeostasis |
title_full | Depletion of Dendritic Cells Enhances Innate Anti-Bacterial Host Defense through Modulation of Phagocyte Homeostasis |
title_fullStr | Depletion of Dendritic Cells Enhances Innate Anti-Bacterial Host Defense through Modulation of Phagocyte Homeostasis |
title_full_unstemmed | Depletion of Dendritic Cells Enhances Innate Anti-Bacterial Host Defense through Modulation of Phagocyte Homeostasis |
title_short | Depletion of Dendritic Cells Enhances Innate Anti-Bacterial Host Defense through Modulation of Phagocyte Homeostasis |
title_sort | depletion of dendritic cells enhances innate anti-bacterial host defense through modulation of phagocyte homeostasis |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3285606/ https://www.ncbi.nlm.nih.gov/pubmed/22383883 http://dx.doi.org/10.1371/journal.ppat.1002552 |
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