Colon-specific immune microenvironment regulates cancer progression versus rejection

Immunotherapies have achieved clinical benefit in many types of cancer but remain limited to a subset of patients in colorectal cancer (CRC). Resistance to immunotherapy can be attributed in part to tissue-specific factors constraining antitumor immunity. Thus, a better understanding of how the colo...

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Main Authors: Giulia Trimaglio, Anne-Françoise Tilkin-Mariamé, Virginie Feliu, Françoise Lauzéral-Vizcaino, Marie Tosolini, Carine Valle, Maha Ayyoub, Olivier Neyrolles, Nathalie Vergnolle, Yoann Rombouts, Christel Devaud
Format: Article
Language:English
Published: Taylor & Francis Group 2020-01-01
Series:OncoImmunology
Subjects:
Online Access:http://dx.doi.org/10.1080/2162402X.2020.1790125
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spelling doaj-42ffdf55cc12435d88a972521717a6052021-09-24T14:41:25ZengTaylor & Francis GroupOncoImmunology2162-402X2020-01-019110.1080/2162402X.2020.17901251790125Colon-specific immune microenvironment regulates cancer progression versus rejectionGiulia Trimaglio0Anne-Françoise Tilkin-Mariamé1Virginie Feliu2Françoise Lauzéral-Vizcaino3Marie Tosolini4Carine Valle5Maha Ayyoub6Olivier Neyrolles7Nathalie Vergnolle8Yoann Rombouts9Christel Devaud10Institut De Pharmacologie Et De Biologie Structurale (IPBS), Université De Toulouse, CNRS, UPSInstitut De Recherche En Santé Digestive (IRSD)Centre De Recherches En Cancérologie De Toulouse (CRCT), INSERM U1037Institut Universitaire Du Cancer (IUCT)- OncopôleCentre De Recherches En Cancérologie De Toulouse (CRCT), INSERM U1037Centre De Recherches En Cancérologie De Toulouse (CRCT), INSERM U1037Centre De Recherches En Cancérologie De Toulouse (CRCT), INSERM U1037Institut De Pharmacologie Et De Biologie Structurale (IPBS), Université De Toulouse, CNRS, UPSInstitut De Recherche En Santé Digestive (IRSD)Institut De Pharmacologie Et De Biologie Structurale (IPBS), Université De Toulouse, CNRS, UPSInstitut De Recherche En Santé Digestive (IRSD)Immunotherapies have achieved clinical benefit in many types of cancer but remain limited to a subset of patients in colorectal cancer (CRC). Resistance to immunotherapy can be attributed in part to tissue-specific factors constraining antitumor immunity. Thus, a better understanding of how the colon microenvironment shapes the immune response to CRC is needed to identify mechanisms of resistance to immunotherapies and guide the development of novel therapeutics. In an orthotopic mouse model of MC38-CRC, tumor progression was monitored by bioluminescence imaging and the immune signatures were assessed at a transcriptional level using NanoString and at a cellular level by flow cytometry. Despite initial tumor growth in all mice, only 25% to 35% of mice developed a progressive lethal CRC while the remaining animals spontaneously rejected their solid tumor. No tumor rejection was observed in the absence of adaptive immunity, nor when MC38 cells were injected in non-orthotopic locations, subcutaneously or into the liver. We observed that progressive CRC tumors exhibited a protumor immune response, characterized by a regulatory T-lymphocyte pattern, discernible shortly post-tumor implantation, as well as suppressive myeloid cells. In contrast, tumor-rejecting mice presented an early inflammatory response and an antitumor microenvironment enriched in CD8+ T cells. Taken together, our data demonstrate the role of the colon microenvironment in regulating the balance between anti or protumor immune responses. While emphasizing the relevance of the CRC orthotopic model, they set the basis for exploring the impact of the identified signatures in colon cancer response to immunotherapy.http://dx.doi.org/10.1080/2162402X.2020.1790125colorectal cancerimmune response polarizationorthotopic model
collection DOAJ
language English
format Article
sources DOAJ
author Giulia Trimaglio
Anne-Françoise Tilkin-Mariamé
Virginie Feliu
Françoise Lauzéral-Vizcaino
Marie Tosolini
Carine Valle
Maha Ayyoub
Olivier Neyrolles
Nathalie Vergnolle
Yoann Rombouts
Christel Devaud
spellingShingle Giulia Trimaglio
Anne-Françoise Tilkin-Mariamé
Virginie Feliu
Françoise Lauzéral-Vizcaino
Marie Tosolini
Carine Valle
Maha Ayyoub
Olivier Neyrolles
Nathalie Vergnolle
Yoann Rombouts
Christel Devaud
Colon-specific immune microenvironment regulates cancer progression versus rejection
OncoImmunology
colorectal cancer
immune response polarization
orthotopic model
author_facet Giulia Trimaglio
Anne-Françoise Tilkin-Mariamé
Virginie Feliu
Françoise Lauzéral-Vizcaino
Marie Tosolini
Carine Valle
Maha Ayyoub
Olivier Neyrolles
Nathalie Vergnolle
Yoann Rombouts
Christel Devaud
author_sort Giulia Trimaglio
title Colon-specific immune microenvironment regulates cancer progression versus rejection
title_short Colon-specific immune microenvironment regulates cancer progression versus rejection
title_full Colon-specific immune microenvironment regulates cancer progression versus rejection
title_fullStr Colon-specific immune microenvironment regulates cancer progression versus rejection
title_full_unstemmed Colon-specific immune microenvironment regulates cancer progression versus rejection
title_sort colon-specific immune microenvironment regulates cancer progression versus rejection
publisher Taylor & Francis Group
series OncoImmunology
issn 2162-402X
publishDate 2020-01-01
description Immunotherapies have achieved clinical benefit in many types of cancer but remain limited to a subset of patients in colorectal cancer (CRC). Resistance to immunotherapy can be attributed in part to tissue-specific factors constraining antitumor immunity. Thus, a better understanding of how the colon microenvironment shapes the immune response to CRC is needed to identify mechanisms of resistance to immunotherapies and guide the development of novel therapeutics. In an orthotopic mouse model of MC38-CRC, tumor progression was monitored by bioluminescence imaging and the immune signatures were assessed at a transcriptional level using NanoString and at a cellular level by flow cytometry. Despite initial tumor growth in all mice, only 25% to 35% of mice developed a progressive lethal CRC while the remaining animals spontaneously rejected their solid tumor. No tumor rejection was observed in the absence of adaptive immunity, nor when MC38 cells were injected in non-orthotopic locations, subcutaneously or into the liver. We observed that progressive CRC tumors exhibited a protumor immune response, characterized by a regulatory T-lymphocyte pattern, discernible shortly post-tumor implantation, as well as suppressive myeloid cells. In contrast, tumor-rejecting mice presented an early inflammatory response and an antitumor microenvironment enriched in CD8+ T cells. Taken together, our data demonstrate the role of the colon microenvironment in regulating the balance between anti or protumor immune responses. While emphasizing the relevance of the CRC orthotopic model, they set the basis for exploring the impact of the identified signatures in colon cancer response to immunotherapy.
topic colorectal cancer
immune response polarization
orthotopic model
url http://dx.doi.org/10.1080/2162402X.2020.1790125
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