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TLR4 abrogates the Th1 immune response through IRF1 and IFN-β to prevent immunopathology during L. infantum infection

A striking feature of human visceral leishmaniasis (VL) is chronic inflammation in the spleen and liver, and VL patients present increased production levels of multiple inflammatory mediators, which contribute to tissue damage and disease severity. Here, we combined an experimental model with the tr...

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Autores principales: Sacramento, Laís Amorim, Benevides, Luciana, Maruyama, Sandra Regina, Tavares, Lucas, Fukutani, Kiyoshi Ferreira, Francozo, Marcela, Sparwasser, Tim, Cunha, Fernando Queiroz, Almeida, Roque Pacheco, da Silva, João Santana, Carregaro, Vanessa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7135367/
https://www.ncbi.nlm.nih.gov/pubmed/32210480
http://dx.doi.org/10.1371/journal.ppat.1008435
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author Sacramento, Laís Amorim
Benevides, Luciana
Maruyama, Sandra Regina
Tavares, Lucas
Fukutani, Kiyoshi Ferreira
Francozo, Marcela
Sparwasser, Tim
Cunha, Fernando Queiroz
Almeida, Roque Pacheco
da Silva, João Santana
Carregaro, Vanessa
author_facet Sacramento, Laís Amorim
Benevides, Luciana
Maruyama, Sandra Regina
Tavares, Lucas
Fukutani, Kiyoshi Ferreira
Francozo, Marcela
Sparwasser, Tim
Cunha, Fernando Queiroz
Almeida, Roque Pacheco
da Silva, João Santana
Carregaro, Vanessa
author_sort Sacramento, Laís Amorim
collection PubMed
description A striking feature of human visceral leishmaniasis (VL) is chronic inflammation in the spleen and liver, and VL patients present increased production levels of multiple inflammatory mediators, which contribute to tissue damage and disease severity. Here, we combined an experimental model with the transcriptional profile of human VL to demonstrate that the TLR4-IFN-β pathway regulates the chronic inflammatory process and is associated with the asymptomatic form of the disease. Tlr4-deficient mice harbored fewer parasites in their spleen and liver than wild-type mice. TLR4 deficiency enhanced the Th1 immune response against the parasite, which was correlated with an increased activation of dendritic cells (DCs). Gene expression analyses demonstrated that IRF1 and IFN-β were expressed downstream of TLR4 after infection. Accordingly, IRF1- and IFNAR-deficient mice harbored fewer parasites in the target organs than wild-type mice due to having an increased Th1 immune response. However, the absence of TLR4 or IFNAR increased the serum transaminase levels in infected mice, indicating the presence of liver damage in these animals. In addition, IFN-β limits IFN-γ production by acting directly on Th1 cells. Using RNA sequencing analysis of human samples, we demonstrated that the transcriptional signature for the TLR4 and type I IFN (IFN-I) pathways was positively modulated in asymptomatic subjects compared with VL patients and thus provide direct evidence demonstrating that the TLR4-IFN-I pathway is related to the nondevelopment of the disease. In conclusion, our results demonstrate that the TLR4-IRF1 pathway culminates in IFN-β production as a mechanism for dampening the chronic inflammatory process and preventing immunopathology development.
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spelling pubmed-71353672020-04-09 TLR4 abrogates the Th1 immune response through IRF1 and IFN-β to prevent immunopathology during L. infantum infection Sacramento, Laís Amorim Benevides, Luciana Maruyama, Sandra Regina Tavares, Lucas Fukutani, Kiyoshi Ferreira Francozo, Marcela Sparwasser, Tim Cunha, Fernando Queiroz Almeida, Roque Pacheco da Silva, João Santana Carregaro, Vanessa PLoS Pathog Research Article A striking feature of human visceral leishmaniasis (VL) is chronic inflammation in the spleen and liver, and VL patients present increased production levels of multiple inflammatory mediators, which contribute to tissue damage and disease severity. Here, we combined an experimental model with the transcriptional profile of human VL to demonstrate that the TLR4-IFN-β pathway regulates the chronic inflammatory process and is associated with the asymptomatic form of the disease. Tlr4-deficient mice harbored fewer parasites in their spleen and liver than wild-type mice. TLR4 deficiency enhanced the Th1 immune response against the parasite, which was correlated with an increased activation of dendritic cells (DCs). Gene expression analyses demonstrated that IRF1 and IFN-β were expressed downstream of TLR4 after infection. Accordingly, IRF1- and IFNAR-deficient mice harbored fewer parasites in the target organs than wild-type mice due to having an increased Th1 immune response. However, the absence of TLR4 or IFNAR increased the serum transaminase levels in infected mice, indicating the presence of liver damage in these animals. In addition, IFN-β limits IFN-γ production by acting directly on Th1 cells. Using RNA sequencing analysis of human samples, we demonstrated that the transcriptional signature for the TLR4 and type I IFN (IFN-I) pathways was positively modulated in asymptomatic subjects compared with VL patients and thus provide direct evidence demonstrating that the TLR4-IFN-I pathway is related to the nondevelopment of the disease. In conclusion, our results demonstrate that the TLR4-IRF1 pathway culminates in IFN-β production as a mechanism for dampening the chronic inflammatory process and preventing immunopathology development. Public Library of Science 2020-03-25 /pmc/articles/PMC7135367/ /pubmed/32210480 http://dx.doi.org/10.1371/journal.ppat.1008435 Text en © 2020 Sacramento 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 (http://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
Sacramento, Laís Amorim
Benevides, Luciana
Maruyama, Sandra Regina
Tavares, Lucas
Fukutani, Kiyoshi Ferreira
Francozo, Marcela
Sparwasser, Tim
Cunha, Fernando Queiroz
Almeida, Roque Pacheco
da Silva, João Santana
Carregaro, Vanessa
TLR4 abrogates the Th1 immune response through IRF1 and IFN-β to prevent immunopathology during L. infantum infection
title TLR4 abrogates the Th1 immune response through IRF1 and IFN-β to prevent immunopathology during L. infantum infection
title_full TLR4 abrogates the Th1 immune response through IRF1 and IFN-β to prevent immunopathology during L. infantum infection
title_fullStr TLR4 abrogates the Th1 immune response through IRF1 and IFN-β to prevent immunopathology during L. infantum infection
title_full_unstemmed TLR4 abrogates the Th1 immune response through IRF1 and IFN-β to prevent immunopathology during L. infantum infection
title_short TLR4 abrogates the Th1 immune response through IRF1 and IFN-β to prevent immunopathology during L. infantum infection
title_sort tlr4 abrogates the th1 immune response through irf1 and ifn-β to prevent immunopathology during l. infantum infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7135367/
https://www.ncbi.nlm.nih.gov/pubmed/32210480
http://dx.doi.org/10.1371/journal.ppat.1008435
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