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Impaired Innate Immunity in Tlr4 (−/−) Mice but Preserved CD8(+) T Cell Responses against Trypanosoma cruzi in Tlr4-, Tlr2-, Tlr9- or Myd88-Deficient Mice

The murine model of T. cruzi infection has provided compelling evidence that development of host resistance against intracellular protozoans critically depends on the activation of members of the Toll-like receptor (TLR) family via the MyD88 adaptor molecule. However, the possibility that TLR/MyD88...

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Autores principales: Oliveira, Ana-Carolina, de Alencar, Bruna C., Tzelepis, Fanny, Klezewsky, Weberton, da Silva, Raquel N., Neves, Fabieni S., Cavalcanti, Gisele S., Boscardin, Silvia, Nunes, Marise P., Santiago, Marcelo F., Nóbrega, Alberto, Rodrigues, Maurício M., Bellio, Maria
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2861687/
https://www.ncbi.nlm.nih.gov/pubmed/20442858
http://dx.doi.org/10.1371/journal.ppat.1000870
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author Oliveira, Ana-Carolina
de Alencar, Bruna C.
Tzelepis, Fanny
Klezewsky, Weberton
da Silva, Raquel N.
Neves, Fabieni S.
Cavalcanti, Gisele S.
Boscardin, Silvia
Nunes, Marise P.
Santiago, Marcelo F.
Nóbrega, Alberto
Rodrigues, Maurício M.
Bellio, Maria
author_facet Oliveira, Ana-Carolina
de Alencar, Bruna C.
Tzelepis, Fanny
Klezewsky, Weberton
da Silva, Raquel N.
Neves, Fabieni S.
Cavalcanti, Gisele S.
Boscardin, Silvia
Nunes, Marise P.
Santiago, Marcelo F.
Nóbrega, Alberto
Rodrigues, Maurício M.
Bellio, Maria
author_sort Oliveira, Ana-Carolina
collection PubMed
description The murine model of T. cruzi infection has provided compelling evidence that development of host resistance against intracellular protozoans critically depends on the activation of members of the Toll-like receptor (TLR) family via the MyD88 adaptor molecule. However, the possibility that TLR/MyD88 signaling pathways also control the induction of immunoprotective CD8(+) T cell-mediated effector functions has not been investigated to date. We addressed this question by measuring the frequencies of IFN-γ secreting CD8(+) T cells specific for H-2K(b)-restricted immunodominant peptides as well as the in vivo Ag-specific cytotoxic response in infected animals that are deficient either in TLR2, TLR4, TLR9 or MyD88 signaling pathways. Strikingly, we found that T. cruzi-infected Tlr2(−/−), Tlr4(−/−), Tlr9(−/) (−) or Myd88(−/−) mice generated both specific cytotoxic responses and IFN-γ secreting CD8(+) T cells at levels comparable to WT mice, although the frequency of IFN-γ(+)CD4(+) cells was diminished in infected Myd88(−/−) mice. We also analyzed the efficiency of TLR4-driven immune responses against T. cruzi using TLR4-deficient mice on the C57BL genetic background (B6 and B10). Our studies demonstrated that TLR4 signaling is required for optimal production of IFN-γ, TNF-α and nitric oxide (NO) in the spleen of infected animals and, as a consequence, Tlr4(−/−) mice display higher parasitemia levels. Collectively, our results indicate that TLR4, as well as previously shown for TLR2, TLR9 and MyD88, contributes to the innate immune response and, consequently, resistance in the acute phase of infection, although each of these pathways is not individually essential for the generation of class I-restricted responses against T. cruzi.
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spelling pubmed-28616872010-05-04 Impaired Innate Immunity in Tlr4 (−/−) Mice but Preserved CD8(+) T Cell Responses against Trypanosoma cruzi in Tlr4-, Tlr2-, Tlr9- or Myd88-Deficient Mice Oliveira, Ana-Carolina de Alencar, Bruna C. Tzelepis, Fanny Klezewsky, Weberton da Silva, Raquel N. Neves, Fabieni S. Cavalcanti, Gisele S. Boscardin, Silvia Nunes, Marise P. Santiago, Marcelo F. Nóbrega, Alberto Rodrigues, Maurício M. Bellio, Maria PLoS Pathog Research Article The murine model of T. cruzi infection has provided compelling evidence that development of host resistance against intracellular protozoans critically depends on the activation of members of the Toll-like receptor (TLR) family via the MyD88 adaptor molecule. However, the possibility that TLR/MyD88 signaling pathways also control the induction of immunoprotective CD8(+) T cell-mediated effector functions has not been investigated to date. We addressed this question by measuring the frequencies of IFN-γ secreting CD8(+) T cells specific for H-2K(b)-restricted immunodominant peptides as well as the in vivo Ag-specific cytotoxic response in infected animals that are deficient either in TLR2, TLR4, TLR9 or MyD88 signaling pathways. Strikingly, we found that T. cruzi-infected Tlr2(−/−), Tlr4(−/−), Tlr9(−/) (−) or Myd88(−/−) mice generated both specific cytotoxic responses and IFN-γ secreting CD8(+) T cells at levels comparable to WT mice, although the frequency of IFN-γ(+)CD4(+) cells was diminished in infected Myd88(−/−) mice. We also analyzed the efficiency of TLR4-driven immune responses against T. cruzi using TLR4-deficient mice on the C57BL genetic background (B6 and B10). Our studies demonstrated that TLR4 signaling is required for optimal production of IFN-γ, TNF-α and nitric oxide (NO) in the spleen of infected animals and, as a consequence, Tlr4(−/−) mice display higher parasitemia levels. Collectively, our results indicate that TLR4, as well as previously shown for TLR2, TLR9 and MyD88, contributes to the innate immune response and, consequently, resistance in the acute phase of infection, although each of these pathways is not individually essential for the generation of class I-restricted responses against T. cruzi. Public Library of Science 2010-04-29 /pmc/articles/PMC2861687/ /pubmed/20442858 http://dx.doi.org/10.1371/journal.ppat.1000870 Text en Oliveira 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
Oliveira, Ana-Carolina
de Alencar, Bruna C.
Tzelepis, Fanny
Klezewsky, Weberton
da Silva, Raquel N.
Neves, Fabieni S.
Cavalcanti, Gisele S.
Boscardin, Silvia
Nunes, Marise P.
Santiago, Marcelo F.
Nóbrega, Alberto
Rodrigues, Maurício M.
Bellio, Maria
Impaired Innate Immunity in Tlr4 (−/−) Mice but Preserved CD8(+) T Cell Responses against Trypanosoma cruzi in Tlr4-, Tlr2-, Tlr9- or Myd88-Deficient Mice
title Impaired Innate Immunity in Tlr4 (−/−) Mice but Preserved CD8(+) T Cell Responses against Trypanosoma cruzi in Tlr4-, Tlr2-, Tlr9- or Myd88-Deficient Mice
title_full Impaired Innate Immunity in Tlr4 (−/−) Mice but Preserved CD8(+) T Cell Responses against Trypanosoma cruzi in Tlr4-, Tlr2-, Tlr9- or Myd88-Deficient Mice
title_fullStr Impaired Innate Immunity in Tlr4 (−/−) Mice but Preserved CD8(+) T Cell Responses against Trypanosoma cruzi in Tlr4-, Tlr2-, Tlr9- or Myd88-Deficient Mice
title_full_unstemmed Impaired Innate Immunity in Tlr4 (−/−) Mice but Preserved CD8(+) T Cell Responses against Trypanosoma cruzi in Tlr4-, Tlr2-, Tlr9- or Myd88-Deficient Mice
title_short Impaired Innate Immunity in Tlr4 (−/−) Mice but Preserved CD8(+) T Cell Responses against Trypanosoma cruzi in Tlr4-, Tlr2-, Tlr9- or Myd88-Deficient Mice
title_sort impaired innate immunity in tlr4 (−/−) mice but preserved cd8(+) t cell responses against trypanosoma cruzi in tlr4-, tlr2-, tlr9- or myd88-deficient mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2861687/
https://www.ncbi.nlm.nih.gov/pubmed/20442858
http://dx.doi.org/10.1371/journal.ppat.1000870
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