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IL-6 Improves the Nitric Oxide-Induced Cytotoxic CD8+ T Cell Dysfunction in Human Chagas Disease

Reactive oxygen and nitrogen species are important microbicidal agents and are also involved in lymphocyte unresponsiveness during experimental infections. Many of the biological effects attributed to nitric oxide are mediated by peroxynitrites, which induce the nitration of immune cells, among othe...

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Autores principales: Sanmarco, Liliana Maria, Visconti, Laura Marina, Eberhardt, Natalia, Ramello, Maria Cecilia, Ponce, Nicolás Eric, Spitale, Natalia Beatriz, Vozza, Maria Lola, Bernardi, Germán Andrés, Gea, Susana, Minguez, Angel Ramón, Aoki, Maria Pilar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5179535/
https://www.ncbi.nlm.nih.gov/pubmed/28066435
http://dx.doi.org/10.3389/fimmu.2016.00626
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author Sanmarco, Liliana Maria
Visconti, Laura Marina
Eberhardt, Natalia
Ramello, Maria Cecilia
Ponce, Nicolás Eric
Spitale, Natalia Beatriz
Vozza, Maria Lola
Bernardi, Germán Andrés
Gea, Susana
Minguez, Angel Ramón
Aoki, Maria Pilar
author_facet Sanmarco, Liliana Maria
Visconti, Laura Marina
Eberhardt, Natalia
Ramello, Maria Cecilia
Ponce, Nicolás Eric
Spitale, Natalia Beatriz
Vozza, Maria Lola
Bernardi, Germán Andrés
Gea, Susana
Minguez, Angel Ramón
Aoki, Maria Pilar
author_sort Sanmarco, Liliana Maria
collection PubMed
description Reactive oxygen and nitrogen species are important microbicidal agents and are also involved in lymphocyte unresponsiveness during experimental infections. Many of the biological effects attributed to nitric oxide are mediated by peroxynitrites, which induce the nitration of immune cells, among others. Our group has demonstrated that nitric oxide is involved in the suppressive activity of myeloid-derived suppressor cells in Trypanosoma cruzi-infected mice, with a higher number of CD8+ T cells suffering surface-nitration compared to uninfected controls. Studying the functional and phenotypic features of peripheral CD8+ T cells from chagasic patients and human cells experimentally infected with T. cruzi, we found that different regulatory mechanisms impaired the effector functions of T cytotoxic population from seropositive patients. Peripheral leukocytes from chagasic patients showed increased nitric oxide production concomitant with increased tyrosine nitration of CD8+ T cells. Additionally, this cytotoxic population exhibited increased apoptotic rate, loss of the TCRζ-chain, and lower levels of CD107a, a marker of degranulation. Strikingly, IL-6 stimulation of in vitro-infected peripheral blood mononuclear cells obtained from healthy donors, blunted T. cruzi-induced nitration of CD3+CD8+ cells, and increased their survival. Furthermore, the treatment of these cultures with an IL-6 neutralizing antibody increased the percentage of T. cruzi-induced CD8+ T cell nitration and raised the release of nitric oxide. The results suggest that the under-responsiveness of cytotoxic T cell population observed in the setting of long-term constant activation of the immune system could be reverted by the pleiotropic actions of IL-6, since this cytokine improves its survival and effector functions.
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spelling pubmed-51795352017-01-06 IL-6 Improves the Nitric Oxide-Induced Cytotoxic CD8+ T Cell Dysfunction in Human Chagas Disease Sanmarco, Liliana Maria Visconti, Laura Marina Eberhardt, Natalia Ramello, Maria Cecilia Ponce, Nicolás Eric Spitale, Natalia Beatriz Vozza, Maria Lola Bernardi, Germán Andrés Gea, Susana Minguez, Angel Ramón Aoki, Maria Pilar Front Immunol Immunology Reactive oxygen and nitrogen species are important microbicidal agents and are also involved in lymphocyte unresponsiveness during experimental infections. Many of the biological effects attributed to nitric oxide are mediated by peroxynitrites, which induce the nitration of immune cells, among others. Our group has demonstrated that nitric oxide is involved in the suppressive activity of myeloid-derived suppressor cells in Trypanosoma cruzi-infected mice, with a higher number of CD8+ T cells suffering surface-nitration compared to uninfected controls. Studying the functional and phenotypic features of peripheral CD8+ T cells from chagasic patients and human cells experimentally infected with T. cruzi, we found that different regulatory mechanisms impaired the effector functions of T cytotoxic population from seropositive patients. Peripheral leukocytes from chagasic patients showed increased nitric oxide production concomitant with increased tyrosine nitration of CD8+ T cells. Additionally, this cytotoxic population exhibited increased apoptotic rate, loss of the TCRζ-chain, and lower levels of CD107a, a marker of degranulation. Strikingly, IL-6 stimulation of in vitro-infected peripheral blood mononuclear cells obtained from healthy donors, blunted T. cruzi-induced nitration of CD3+CD8+ cells, and increased their survival. Furthermore, the treatment of these cultures with an IL-6 neutralizing antibody increased the percentage of T. cruzi-induced CD8+ T cell nitration and raised the release of nitric oxide. The results suggest that the under-responsiveness of cytotoxic T cell population observed in the setting of long-term constant activation of the immune system could be reverted by the pleiotropic actions of IL-6, since this cytokine improves its survival and effector functions. Frontiers Media S.A. 2016-12-23 /pmc/articles/PMC5179535/ /pubmed/28066435 http://dx.doi.org/10.3389/fimmu.2016.00626 Text en Copyright © 2016 Sanmarco, Visconti, Eberhardt, Ramello, Ponce, Spitale, Vozza, Bernardi, Gea, Minguez and Aoki. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Sanmarco, Liliana Maria
Visconti, Laura Marina
Eberhardt, Natalia
Ramello, Maria Cecilia
Ponce, Nicolás Eric
Spitale, Natalia Beatriz
Vozza, Maria Lola
Bernardi, Germán Andrés
Gea, Susana
Minguez, Angel Ramón
Aoki, Maria Pilar
IL-6 Improves the Nitric Oxide-Induced Cytotoxic CD8+ T Cell Dysfunction in Human Chagas Disease
title IL-6 Improves the Nitric Oxide-Induced Cytotoxic CD8+ T Cell Dysfunction in Human Chagas Disease
title_full IL-6 Improves the Nitric Oxide-Induced Cytotoxic CD8+ T Cell Dysfunction in Human Chagas Disease
title_fullStr IL-6 Improves the Nitric Oxide-Induced Cytotoxic CD8+ T Cell Dysfunction in Human Chagas Disease
title_full_unstemmed IL-6 Improves the Nitric Oxide-Induced Cytotoxic CD8+ T Cell Dysfunction in Human Chagas Disease
title_short IL-6 Improves the Nitric Oxide-Induced Cytotoxic CD8+ T Cell Dysfunction in Human Chagas Disease
title_sort il-6 improves the nitric oxide-induced cytotoxic cd8+ t cell dysfunction in human chagas disease
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5179535/
https://www.ncbi.nlm.nih.gov/pubmed/28066435
http://dx.doi.org/10.3389/fimmu.2016.00626
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