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IDO Targeting in Sarcoma: Biological and Clinical Implications

Sarcomas are heterogeneous malignant mesenchymal neoplasms with limited sensitivity to immunotherapy. We recently demonstrated an increase in Kynurenine Pathway (KP) activity in the plasma of sarcoma patients treated with pembrolizumab. While the KP has already been described to favor immune escape...

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Autores principales: Nafia, Imane, Toulmonde, Maud, Bortolotto, Doriane, Chaibi, Assia, Bodet, Dominique, Rey, Christophe, Velasco, Valerie, Larmonier, Claire B., Cerf, Loïc, Adam, Julien, Le Loarer, François, Savina, Ariel, Bessede, Alban, Italiano, Antoine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7066301/
https://www.ncbi.nlm.nih.gov/pubmed/32194552
http://dx.doi.org/10.3389/fimmu.2020.00274
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author Nafia, Imane
Toulmonde, Maud
Bortolotto, Doriane
Chaibi, Assia
Bodet, Dominique
Rey, Christophe
Velasco, Valerie
Larmonier, Claire B.
Cerf, Loïc
Adam, Julien
Le Loarer, François
Savina, Ariel
Bessede, Alban
Italiano, Antoine
author_facet Nafia, Imane
Toulmonde, Maud
Bortolotto, Doriane
Chaibi, Assia
Bodet, Dominique
Rey, Christophe
Velasco, Valerie
Larmonier, Claire B.
Cerf, Loïc
Adam, Julien
Le Loarer, François
Savina, Ariel
Bessede, Alban
Italiano, Antoine
author_sort Nafia, Imane
collection PubMed
description Sarcomas are heterogeneous malignant mesenchymal neoplasms with limited sensitivity to immunotherapy. We recently demonstrated an increase in Kynurenine Pathway (KP) activity in the plasma of sarcoma patients treated with pembrolizumab. While the KP has already been described to favor immune escape through the degradation of L-Tryptophan and production of metabolites including L-Kynurenine, Indoleamine 2,3 dioxygenase (IDO1), a first rate-limiting enzyme of the KP, still represents an attractive therapeutic target, and its blockade had not yet been investigated in sarcomas. Using immunohistochemistry, IDO1 and CD8, expression profiles were addressed within 203 cases of human sarcomas. At a preclinical level, we investigated the modulation of the KP upon PDL1 blockade in a syngeneic model of sarcoma through mRNA quantification of key KP enzymes within the tumor. Furthermore, in order to evaluate the possible anti-tumor effect of IDO blockade in combination with PDL1 blockade, an innovative IDO inhibitor (GDC-0919) was used. Its effect was first assessed on Kynurenine to Tryptophan ratio at plasmatic level and also within the tumor. Following GDC-0919 treatment, alone or in combination with anti-PDL1 antibody, tumor growth, immune cell infiltration, and gene expression profiling were measured. IDO1 expression was observed in 39.1% of human sarcoma cases and was significantly higher in tumors with high CD8 infiltration. In the pre-clinical setting, blockade of PDL1 led to a strong anti-tumor effect and was associated with an intratumoral inflammatory cytokines signature driven by Ifng but also with a modulation of the KP enzymes including Ido1 and Ido2. IDO1 inhibition using GDC-0919 resulted in (i) a significant decrease of plasmatic Kynurenine to Tryptophan ratio and in (ii) a decrease of tumoral Kynurenine. However, GDC-0919 used alone or combined with anti-PDL1, did not show anti-tumoral activity and did not affect the tumor immune cell infiltrate. In order to elucidate the mechanism(s) underlying the lack of effect of GDC-0919, we analyzed the gene expression profile of intratumoral biopsies. Interestingly, we have found that GDC-0919 induced a downregulation of the expression of pvr and granzymes, and an upregulation of inhba and Dtx4 suggesting a potential role of the IDO pathway in the control of NK function.
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spelling pubmed-70663012020-03-19 IDO Targeting in Sarcoma: Biological and Clinical Implications Nafia, Imane Toulmonde, Maud Bortolotto, Doriane Chaibi, Assia Bodet, Dominique Rey, Christophe Velasco, Valerie Larmonier, Claire B. Cerf, Loïc Adam, Julien Le Loarer, François Savina, Ariel Bessede, Alban Italiano, Antoine Front Immunol Immunology Sarcomas are heterogeneous malignant mesenchymal neoplasms with limited sensitivity to immunotherapy. We recently demonstrated an increase in Kynurenine Pathway (KP) activity in the plasma of sarcoma patients treated with pembrolizumab. While the KP has already been described to favor immune escape through the degradation of L-Tryptophan and production of metabolites including L-Kynurenine, Indoleamine 2,3 dioxygenase (IDO1), a first rate-limiting enzyme of the KP, still represents an attractive therapeutic target, and its blockade had not yet been investigated in sarcomas. Using immunohistochemistry, IDO1 and CD8, expression profiles were addressed within 203 cases of human sarcomas. At a preclinical level, we investigated the modulation of the KP upon PDL1 blockade in a syngeneic model of sarcoma through mRNA quantification of key KP enzymes within the tumor. Furthermore, in order to evaluate the possible anti-tumor effect of IDO blockade in combination with PDL1 blockade, an innovative IDO inhibitor (GDC-0919) was used. Its effect was first assessed on Kynurenine to Tryptophan ratio at plasmatic level and also within the tumor. Following GDC-0919 treatment, alone or in combination with anti-PDL1 antibody, tumor growth, immune cell infiltration, and gene expression profiling were measured. IDO1 expression was observed in 39.1% of human sarcoma cases and was significantly higher in tumors with high CD8 infiltration. In the pre-clinical setting, blockade of PDL1 led to a strong anti-tumor effect and was associated with an intratumoral inflammatory cytokines signature driven by Ifng but also with a modulation of the KP enzymes including Ido1 and Ido2. IDO1 inhibition using GDC-0919 resulted in (i) a significant decrease of plasmatic Kynurenine to Tryptophan ratio and in (ii) a decrease of tumoral Kynurenine. However, GDC-0919 used alone or combined with anti-PDL1, did not show anti-tumoral activity and did not affect the tumor immune cell infiltrate. In order to elucidate the mechanism(s) underlying the lack of effect of GDC-0919, we analyzed the gene expression profile of intratumoral biopsies. Interestingly, we have found that GDC-0919 induced a downregulation of the expression of pvr and granzymes, and an upregulation of inhba and Dtx4 suggesting a potential role of the IDO pathway in the control of NK function. Frontiers Media S.A. 2020-03-05 /pmc/articles/PMC7066301/ /pubmed/32194552 http://dx.doi.org/10.3389/fimmu.2020.00274 Text en Copyright © 2020 Nafia, Toulmonde, Bortolotto, Chaibi, Bodet, Rey, Velasco, Larmonier, Cerf, Adam, Le Loarer, Savina, Bessede and Italiano. 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) and the copyright owner(s) 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
Nafia, Imane
Toulmonde, Maud
Bortolotto, Doriane
Chaibi, Assia
Bodet, Dominique
Rey, Christophe
Velasco, Valerie
Larmonier, Claire B.
Cerf, Loïc
Adam, Julien
Le Loarer, François
Savina, Ariel
Bessede, Alban
Italiano, Antoine
IDO Targeting in Sarcoma: Biological and Clinical Implications
title IDO Targeting in Sarcoma: Biological and Clinical Implications
title_full IDO Targeting in Sarcoma: Biological and Clinical Implications
title_fullStr IDO Targeting in Sarcoma: Biological and Clinical Implications
title_full_unstemmed IDO Targeting in Sarcoma: Biological and Clinical Implications
title_short IDO Targeting in Sarcoma: Biological and Clinical Implications
title_sort ido targeting in sarcoma: biological and clinical implications
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7066301/
https://www.ncbi.nlm.nih.gov/pubmed/32194552
http://dx.doi.org/10.3389/fimmu.2020.00274
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