Cargando…

CD39(+) conventional CD4(+) T cells with exhaustion traits and cytotoxic potential infiltrate tumors and expand upon CTLA-4 blockade

Conventional CD4(+) T (Tconv) lymphocytes play important roles in tumor immunity; however, their contribution to tumor elimination remains poorly understood. Here, we describe a subset of tumor-infiltrating Tconv cells characterized by the expression of CD39. In several mouse cancer models, we obser...

Descripción completa

Detalles Bibliográficos
Autores principales: Bossio, Sabrina N., Abrate, Carolina, Tosello Boari, Jimena, Rodriguez, Constanza, Canale, Fernando P., Ramello, María C., Brunotto, Valentina, Richer, Wilfrid, Rocha, Dario, Sedlik, Christine, Vincent-Salomon, Anne, Borcoman, Edith, Del Castillo, Andres, Gruppi, Adriana, Fernandez, Elmer, Acosta Rodríguez, Eva V., Piaggio, Eliane, Montes, Carolina L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10599196/
https://www.ncbi.nlm.nih.gov/pubmed/37885970
http://dx.doi.org/10.1080/2162402X.2023.2246319
_version_ 1785125720623677440
author Bossio, Sabrina N.
Abrate, Carolina
Tosello Boari, Jimena
Rodriguez, Constanza
Canale, Fernando P.
Ramello, María C.
Brunotto, Valentina
Richer, Wilfrid
Rocha, Dario
Sedlik, Christine
Vincent-Salomon, Anne
Borcoman, Edith
Del Castillo, Andres
Gruppi, Adriana
Fernandez, Elmer
Acosta Rodríguez, Eva V.
Piaggio, Eliane
Montes, Carolina L.
author_facet Bossio, Sabrina N.
Abrate, Carolina
Tosello Boari, Jimena
Rodriguez, Constanza
Canale, Fernando P.
Ramello, María C.
Brunotto, Valentina
Richer, Wilfrid
Rocha, Dario
Sedlik, Christine
Vincent-Salomon, Anne
Borcoman, Edith
Del Castillo, Andres
Gruppi, Adriana
Fernandez, Elmer
Acosta Rodríguez, Eva V.
Piaggio, Eliane
Montes, Carolina L.
author_sort Bossio, Sabrina N.
collection PubMed
description Conventional CD4(+) T (Tconv) lymphocytes play important roles in tumor immunity; however, their contribution to tumor elimination remains poorly understood. Here, we describe a subset of tumor-infiltrating Tconv cells characterized by the expression of CD39. In several mouse cancer models, we observed that CD39(+) Tconv cells accumulated in tumors but were absent in lymphoid organs. Compared to tumor CD39(−) counterparts, CD39(+) Tconv cells exhibited a cytotoxic and exhausted signature at the transcriptomic level, confirmed by high protein expression of inhibitory receptors and transcription factors related to the exhaustion. Additionally, CD39(+) Tconv cells showed increased production of IFN[Image: see text] , granzyme B, perforin and CD107a expression, but reduced production of TNF. Around 55% of OVA-specific Tconv from B16-OVA tumor-bearing mice, expressed CD39. In vivo CTLA-4 blockade induced the expansion of tumor CD39(+) Tconv cells, which maintained their cytotoxic and exhausted features. In breast cancer patients, CD39(+) Tconv cells were found in tumors and in metastatic lymph nodes but were less frequent in adjacent non-tumoral mammary tissue and not detected in non-metastatic lymph nodes and blood. Human tumor CD39(+) Tconv cells constituted a heterogeneous cell population with features of exhaustion, high expression of inhibitory receptors and CD107a. We found that high CD4 and ENTPD1 (CD39) gene expression in human tumor tissues correlated with a higher overall survival rate in breast cancer patients. Our results identify CD39 as a biomarker of Tconv cells, with characteristics of both exhaustion and cytotoxic potential, and indicate CD39(+) Tconv cells as players within the immune response against tumors.
format Online
Article
Text
id pubmed-10599196
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Taylor & Francis
record_format MEDLINE/PubMed
spelling pubmed-105991962023-10-26 CD39(+) conventional CD4(+) T cells with exhaustion traits and cytotoxic potential infiltrate tumors and expand upon CTLA-4 blockade Bossio, Sabrina N. Abrate, Carolina Tosello Boari, Jimena Rodriguez, Constanza Canale, Fernando P. Ramello, María C. Brunotto, Valentina Richer, Wilfrid Rocha, Dario Sedlik, Christine Vincent-Salomon, Anne Borcoman, Edith Del Castillo, Andres Gruppi, Adriana Fernandez, Elmer Acosta Rodríguez, Eva V. Piaggio, Eliane Montes, Carolina L. Oncoimmunology Original Research Conventional CD4(+) T (Tconv) lymphocytes play important roles in tumor immunity; however, their contribution to tumor elimination remains poorly understood. Here, we describe a subset of tumor-infiltrating Tconv cells characterized by the expression of CD39. In several mouse cancer models, we observed that CD39(+) Tconv cells accumulated in tumors but were absent in lymphoid organs. Compared to tumor CD39(−) counterparts, CD39(+) Tconv cells exhibited a cytotoxic and exhausted signature at the transcriptomic level, confirmed by high protein expression of inhibitory receptors and transcription factors related to the exhaustion. Additionally, CD39(+) Tconv cells showed increased production of IFN[Image: see text] , granzyme B, perforin and CD107a expression, but reduced production of TNF. Around 55% of OVA-specific Tconv from B16-OVA tumor-bearing mice, expressed CD39. In vivo CTLA-4 blockade induced the expansion of tumor CD39(+) Tconv cells, which maintained their cytotoxic and exhausted features. In breast cancer patients, CD39(+) Tconv cells were found in tumors and in metastatic lymph nodes but were less frequent in adjacent non-tumoral mammary tissue and not detected in non-metastatic lymph nodes and blood. Human tumor CD39(+) Tconv cells constituted a heterogeneous cell population with features of exhaustion, high expression of inhibitory receptors and CD107a. We found that high CD4 and ENTPD1 (CD39) gene expression in human tumor tissues correlated with a higher overall survival rate in breast cancer patients. Our results identify CD39 as a biomarker of Tconv cells, with characteristics of both exhaustion and cytotoxic potential, and indicate CD39(+) Tconv cells as players within the immune response against tumors. Taylor & Francis 2023-08-18 /pmc/articles/PMC10599196/ /pubmed/37885970 http://dx.doi.org/10.1080/2162402X.2023.2246319 Text en © 2023 The Author(s). Published with license by Taylor & Francis Group, LLC. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) ), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited. The terms on which this article has been published allow the posting of the Accepted Manuscript in a repository by the author(s) or with their consent.
spellingShingle Original Research
Bossio, Sabrina N.
Abrate, Carolina
Tosello Boari, Jimena
Rodriguez, Constanza
Canale, Fernando P.
Ramello, María C.
Brunotto, Valentina
Richer, Wilfrid
Rocha, Dario
Sedlik, Christine
Vincent-Salomon, Anne
Borcoman, Edith
Del Castillo, Andres
Gruppi, Adriana
Fernandez, Elmer
Acosta Rodríguez, Eva V.
Piaggio, Eliane
Montes, Carolina L.
CD39(+) conventional CD4(+) T cells with exhaustion traits and cytotoxic potential infiltrate tumors and expand upon CTLA-4 blockade
title CD39(+) conventional CD4(+) T cells with exhaustion traits and cytotoxic potential infiltrate tumors and expand upon CTLA-4 blockade
title_full CD39(+) conventional CD4(+) T cells with exhaustion traits and cytotoxic potential infiltrate tumors and expand upon CTLA-4 blockade
title_fullStr CD39(+) conventional CD4(+) T cells with exhaustion traits and cytotoxic potential infiltrate tumors and expand upon CTLA-4 blockade
title_full_unstemmed CD39(+) conventional CD4(+) T cells with exhaustion traits and cytotoxic potential infiltrate tumors and expand upon CTLA-4 blockade
title_short CD39(+) conventional CD4(+) T cells with exhaustion traits and cytotoxic potential infiltrate tumors and expand upon CTLA-4 blockade
title_sort cd39(+) conventional cd4(+) t cells with exhaustion traits and cytotoxic potential infiltrate tumors and expand upon ctla-4 blockade
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10599196/
https://www.ncbi.nlm.nih.gov/pubmed/37885970
http://dx.doi.org/10.1080/2162402X.2023.2246319
work_keys_str_mv AT bossiosabrinan cd39conventionalcd4tcellswithexhaustiontraitsandcytotoxicpotentialinfiltratetumorsandexpanduponctla4blockade
AT abratecarolina cd39conventionalcd4tcellswithexhaustiontraitsandcytotoxicpotentialinfiltratetumorsandexpanduponctla4blockade
AT toselloboarijimena cd39conventionalcd4tcellswithexhaustiontraitsandcytotoxicpotentialinfiltratetumorsandexpanduponctla4blockade
AT rodriguezconstanza cd39conventionalcd4tcellswithexhaustiontraitsandcytotoxicpotentialinfiltratetumorsandexpanduponctla4blockade
AT canalefernandop cd39conventionalcd4tcellswithexhaustiontraitsandcytotoxicpotentialinfiltratetumorsandexpanduponctla4blockade
AT ramellomariac cd39conventionalcd4tcellswithexhaustiontraitsandcytotoxicpotentialinfiltratetumorsandexpanduponctla4blockade
AT brunottovalentina cd39conventionalcd4tcellswithexhaustiontraitsandcytotoxicpotentialinfiltratetumorsandexpanduponctla4blockade
AT richerwilfrid cd39conventionalcd4tcellswithexhaustiontraitsandcytotoxicpotentialinfiltratetumorsandexpanduponctla4blockade
AT rochadario cd39conventionalcd4tcellswithexhaustiontraitsandcytotoxicpotentialinfiltratetumorsandexpanduponctla4blockade
AT sedlikchristine cd39conventionalcd4tcellswithexhaustiontraitsandcytotoxicpotentialinfiltratetumorsandexpanduponctla4blockade
AT vincentsalomonanne cd39conventionalcd4tcellswithexhaustiontraitsandcytotoxicpotentialinfiltratetumorsandexpanduponctla4blockade
AT borcomanedith cd39conventionalcd4tcellswithexhaustiontraitsandcytotoxicpotentialinfiltratetumorsandexpanduponctla4blockade
AT delcastilloandres cd39conventionalcd4tcellswithexhaustiontraitsandcytotoxicpotentialinfiltratetumorsandexpanduponctla4blockade
AT gruppiadriana cd39conventionalcd4tcellswithexhaustiontraitsandcytotoxicpotentialinfiltratetumorsandexpanduponctla4blockade
AT fernandezelmer cd39conventionalcd4tcellswithexhaustiontraitsandcytotoxicpotentialinfiltratetumorsandexpanduponctla4blockade
AT acostarodriguezevav cd39conventionalcd4tcellswithexhaustiontraitsandcytotoxicpotentialinfiltratetumorsandexpanduponctla4blockade
AT piaggioeliane cd39conventionalcd4tcellswithexhaustiontraitsandcytotoxicpotentialinfiltratetumorsandexpanduponctla4blockade
AT montescarolinal cd39conventionalcd4tcellswithexhaustiontraitsandcytotoxicpotentialinfiltratetumorsandexpanduponctla4blockade