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IL-21 modulates memory and exhaustion phenotype of T-cells in a fatty acid oxidation-dependent manner

T-cell-based therapies represent a promising strategy for cancer treatment. In this context, cytokines are discussed as a bona fide instrument for fine-tuning T- cell biology. One promising candidate is the pleiotropic interleukin-21 (IL-21) with only little being known regarding its direct effects...

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Autores principales: Loschinski, Romy, Böttcher, Martin, Stoll, Andrej, Bruns, Heiko, Mackensen, Andreas, Mougiakakos, Dimitrios
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5862566/
https://www.ncbi.nlm.nih.gov/pubmed/29568345
http://dx.doi.org/10.18632/oncotarget.24442
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author Loschinski, Romy
Böttcher, Martin
Stoll, Andrej
Bruns, Heiko
Mackensen, Andreas
Mougiakakos, Dimitrios
author_facet Loschinski, Romy
Böttcher, Martin
Stoll, Andrej
Bruns, Heiko
Mackensen, Andreas
Mougiakakos, Dimitrios
author_sort Loschinski, Romy
collection PubMed
description T-cell-based therapies represent a promising strategy for cancer treatment. In this context, cytokines are discussed as a bona fide instrument for fine-tuning T- cell biology. One promising candidate is the pleiotropic interleukin-21 (IL-21) with only little being known regarding its direct effects on human T-cells. Thus, we sought out to characterize the impact of IL-21 on T-cell metabolism, fitness, and differentiation. Culturing T-cells in presence of IL-21 elicited a metabolic skewing away from aerobic glycolysis towards fatty acid oxidation (FAO). These changes of the metabolic framework were paralleled by increased mitochondrial fitness and biogenesis. However, oxidative stress levels were not increased but rather decreased. Furthermore, elevated FAO and mitochondrial biomass together with enhanced antioxidative properties are linked to formation of longer lasting memory responses and less PD-1 expression. We similarly observed an IL-21-triggered induction of central memory-like T-cells and reduced levels of PD-1 on the cell surface. Taken together, IL-21 shifts T-cells towards an immunometabolic phenotype that has been associated with increased survivability and enhanced anti-tumor efficacy. In addition, our data reveals a novel interconnection between fatty acid metabolism and immune function regulated by IL 21.
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spelling pubmed-58625662018-03-22 IL-21 modulates memory and exhaustion phenotype of T-cells in a fatty acid oxidation-dependent manner Loschinski, Romy Böttcher, Martin Stoll, Andrej Bruns, Heiko Mackensen, Andreas Mougiakakos, Dimitrios Oncotarget Research Paper: Immunology T-cell-based therapies represent a promising strategy for cancer treatment. In this context, cytokines are discussed as a bona fide instrument for fine-tuning T- cell biology. One promising candidate is the pleiotropic interleukin-21 (IL-21) with only little being known regarding its direct effects on human T-cells. Thus, we sought out to characterize the impact of IL-21 on T-cell metabolism, fitness, and differentiation. Culturing T-cells in presence of IL-21 elicited a metabolic skewing away from aerobic glycolysis towards fatty acid oxidation (FAO). These changes of the metabolic framework were paralleled by increased mitochondrial fitness and biogenesis. However, oxidative stress levels were not increased but rather decreased. Furthermore, elevated FAO and mitochondrial biomass together with enhanced antioxidative properties are linked to formation of longer lasting memory responses and less PD-1 expression. We similarly observed an IL-21-triggered induction of central memory-like T-cells and reduced levels of PD-1 on the cell surface. Taken together, IL-21 shifts T-cells towards an immunometabolic phenotype that has been associated with increased survivability and enhanced anti-tumor efficacy. In addition, our data reveals a novel interconnection between fatty acid metabolism and immune function regulated by IL 21. Impact Journals LLC 2018-02-07 /pmc/articles/PMC5862566/ /pubmed/29568345 http://dx.doi.org/10.18632/oncotarget.24442 Text en Copyright: © 2018 Loschinski et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper: Immunology
Loschinski, Romy
Böttcher, Martin
Stoll, Andrej
Bruns, Heiko
Mackensen, Andreas
Mougiakakos, Dimitrios
IL-21 modulates memory and exhaustion phenotype of T-cells in a fatty acid oxidation-dependent manner
title IL-21 modulates memory and exhaustion phenotype of T-cells in a fatty acid oxidation-dependent manner
title_full IL-21 modulates memory and exhaustion phenotype of T-cells in a fatty acid oxidation-dependent manner
title_fullStr IL-21 modulates memory and exhaustion phenotype of T-cells in a fatty acid oxidation-dependent manner
title_full_unstemmed IL-21 modulates memory and exhaustion phenotype of T-cells in a fatty acid oxidation-dependent manner
title_short IL-21 modulates memory and exhaustion phenotype of T-cells in a fatty acid oxidation-dependent manner
title_sort il-21 modulates memory and exhaustion phenotype of t-cells in a fatty acid oxidation-dependent manner
topic Research Paper: Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5862566/
https://www.ncbi.nlm.nih.gov/pubmed/29568345
http://dx.doi.org/10.18632/oncotarget.24442
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