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Gene Doping with Peroxisome-Proliferator-Activated Receptor Beta/Delta Agonists Alters Immunity but Exercise Training Mitigates the Detection of Effects in Blood Samples

Synthetic ligands of peroxisome-proliferator-activated receptor beta/delta (PPARβ/δ) are being used as performance-enhancing drugs by athletes. Since we previously showed that PPARβ/δ activation affects T cell biology, we wanted to investigate whether a specific blood T cell signature could be emplo...

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Autores principales: Sibille, Brigitte, Mothe-Satney, Isabelle, Le Menn, Gwenaëlle, Lepouse, Doriane, Le Garf, Sébastien, Baudoin, Elodie, Murdaca, Joseph, Moratal, Claudine, Lamghari, Noura, Chinetti, Giulia, Neels, Jaap G., Rousseau, Anne-Sophie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8584242/
https://www.ncbi.nlm.nih.gov/pubmed/34768927
http://dx.doi.org/10.3390/ijms222111497
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author Sibille, Brigitte
Mothe-Satney, Isabelle
Le Menn, Gwenaëlle
Lepouse, Doriane
Le Garf, Sébastien
Baudoin, Elodie
Murdaca, Joseph
Moratal, Claudine
Lamghari, Noura
Chinetti, Giulia
Neels, Jaap G.
Rousseau, Anne-Sophie
author_facet Sibille, Brigitte
Mothe-Satney, Isabelle
Le Menn, Gwenaëlle
Lepouse, Doriane
Le Garf, Sébastien
Baudoin, Elodie
Murdaca, Joseph
Moratal, Claudine
Lamghari, Noura
Chinetti, Giulia
Neels, Jaap G.
Rousseau, Anne-Sophie
author_sort Sibille, Brigitte
collection PubMed
description Synthetic ligands of peroxisome-proliferator-activated receptor beta/delta (PPARβ/δ) are being used as performance-enhancing drugs by athletes. Since we previously showed that PPARβ/δ activation affects T cell biology, we wanted to investigate whether a specific blood T cell signature could be employed as a method to detect the use of PPARβ/δ agonists. We analyzed in primary human T cells the in vitro effect of PPARβ/δ activation on fatty acid oxidation (FAO) and on their differentiation into regulatory T cells (Tregs). Furthermore, we conducted studies in mice assigned to groups according to an 8-week exercise training program and/or a 6-week treatment with 3 mg/kg/day of GW0742, a PPARβ/δ agonist, in order to (1) determine the immune impact of the treatment on secondary lymphoid organs and to (2) validate a blood signature. Our results show that PPARβ/δ activation increases FAO potential in human and mouse T cells and mouse secondary lymphoid organs. This was accompanied by increased Treg polarization of human primary T cells. Moreover, Treg prevalence in mouse lymph nodes was increased when PPARβ/δ activation was combined with exercise training. Lastly, PPARβ/δ activation increased FAO potential in mouse blood T cells. Unfortunately, this signature was masked by training in mice. In conclusion, beyond the fact that it is unlikely that this signature could be used as a doping-control strategy, our results suggest that the use of PPARβ/δ agonists could have potential detrimental immune effects that may not be detectable in blood samples.
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spelling pubmed-85842422021-11-12 Gene Doping with Peroxisome-Proliferator-Activated Receptor Beta/Delta Agonists Alters Immunity but Exercise Training Mitigates the Detection of Effects in Blood Samples Sibille, Brigitte Mothe-Satney, Isabelle Le Menn, Gwenaëlle Lepouse, Doriane Le Garf, Sébastien Baudoin, Elodie Murdaca, Joseph Moratal, Claudine Lamghari, Noura Chinetti, Giulia Neels, Jaap G. Rousseau, Anne-Sophie Int J Mol Sci Article Synthetic ligands of peroxisome-proliferator-activated receptor beta/delta (PPARβ/δ) are being used as performance-enhancing drugs by athletes. Since we previously showed that PPARβ/δ activation affects T cell biology, we wanted to investigate whether a specific blood T cell signature could be employed as a method to detect the use of PPARβ/δ agonists. We analyzed in primary human T cells the in vitro effect of PPARβ/δ activation on fatty acid oxidation (FAO) and on their differentiation into regulatory T cells (Tregs). Furthermore, we conducted studies in mice assigned to groups according to an 8-week exercise training program and/or a 6-week treatment with 3 mg/kg/day of GW0742, a PPARβ/δ agonist, in order to (1) determine the immune impact of the treatment on secondary lymphoid organs and to (2) validate a blood signature. Our results show that PPARβ/δ activation increases FAO potential in human and mouse T cells and mouse secondary lymphoid organs. This was accompanied by increased Treg polarization of human primary T cells. Moreover, Treg prevalence in mouse lymph nodes was increased when PPARβ/δ activation was combined with exercise training. Lastly, PPARβ/δ activation increased FAO potential in mouse blood T cells. Unfortunately, this signature was masked by training in mice. In conclusion, beyond the fact that it is unlikely that this signature could be used as a doping-control strategy, our results suggest that the use of PPARβ/δ agonists could have potential detrimental immune effects that may not be detectable in blood samples. MDPI 2021-10-25 /pmc/articles/PMC8584242/ /pubmed/34768927 http://dx.doi.org/10.3390/ijms222111497 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sibille, Brigitte
Mothe-Satney, Isabelle
Le Menn, Gwenaëlle
Lepouse, Doriane
Le Garf, Sébastien
Baudoin, Elodie
Murdaca, Joseph
Moratal, Claudine
Lamghari, Noura
Chinetti, Giulia
Neels, Jaap G.
Rousseau, Anne-Sophie
Gene Doping with Peroxisome-Proliferator-Activated Receptor Beta/Delta Agonists Alters Immunity but Exercise Training Mitigates the Detection of Effects in Blood Samples
title Gene Doping with Peroxisome-Proliferator-Activated Receptor Beta/Delta Agonists Alters Immunity but Exercise Training Mitigates the Detection of Effects in Blood Samples
title_full Gene Doping with Peroxisome-Proliferator-Activated Receptor Beta/Delta Agonists Alters Immunity but Exercise Training Mitigates the Detection of Effects in Blood Samples
title_fullStr Gene Doping with Peroxisome-Proliferator-Activated Receptor Beta/Delta Agonists Alters Immunity but Exercise Training Mitigates the Detection of Effects in Blood Samples
title_full_unstemmed Gene Doping with Peroxisome-Proliferator-Activated Receptor Beta/Delta Agonists Alters Immunity but Exercise Training Mitigates the Detection of Effects in Blood Samples
title_short Gene Doping with Peroxisome-Proliferator-Activated Receptor Beta/Delta Agonists Alters Immunity but Exercise Training Mitigates the Detection of Effects in Blood Samples
title_sort gene doping with peroxisome-proliferator-activated receptor beta/delta agonists alters immunity but exercise training mitigates the detection of effects in blood samples
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8584242/
https://www.ncbi.nlm.nih.gov/pubmed/34768927
http://dx.doi.org/10.3390/ijms222111497
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