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IL9 Polarizes Macrophages to M1 and Induces the Infiltration of Antitumor Immune Cells via MIP-1 and CXCR3 Chemokines

Tumor-associated macrophages (TAM) are involved in tumor progression, metastasis, and immunosuppression. Because TAMs are highly plastic and could alter their phenotypes to proinflammatory M1 in response to environmental stimuli, reeducating TAMs has emerged as a promising approach to overcoming the...

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Autores principales: Do-Thi, Van Anh, Park, Sang Min, Park, Song Mi, Jeong, Hye Jin, Cho, Geunyoung, An, Hyun-Jung, Kim, Young Sang, Lee, Hayyoung, Lee, Jie-Oh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for Cancer Research 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10035505/
https://www.ncbi.nlm.nih.gov/pubmed/36968220
http://dx.doi.org/10.1158/2767-9764.CRC-22-0246
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author Do-Thi, Van Anh
Park, Sang Min
Park, Song Mi
Jeong, Hye Jin
Cho, Geunyoung
An, Hyun-Jung
Kim, Young Sang
Lee, Hayyoung
Lee, Jie-Oh
author_facet Do-Thi, Van Anh
Park, Sang Min
Park, Song Mi
Jeong, Hye Jin
Cho, Geunyoung
An, Hyun-Jung
Kim, Young Sang
Lee, Hayyoung
Lee, Jie-Oh
author_sort Do-Thi, Van Anh
collection PubMed
description Tumor-associated macrophages (TAM) are involved in tumor progression, metastasis, and immunosuppression. Because TAMs are highly plastic and could alter their phenotypes to proinflammatory M1 in response to environmental stimuli, reeducating TAMs has emerged as a promising approach to overcoming the challenges of solid cancer treatment. This study investigated the effect of IL9 on macrophage M1 polarization and verified its antitumor potential to retrain TAMs and promote chemokine secretion. We demonstrated that IL9 stimulated macrophage proliferation and polarized them toward the proinflammatory M1 phenotype in an IFNγ-dependent manner. Tumor-localized IL9 also polarized TAMs toward M1 in vivo and made them release CCL3/4 and CXCL9/10 to recruit antitumor immune cells, including T and natural killer cells, into the tumor microenvironment. Furthermore, peritoneal treatment with recombinant IL9 delayed the growth of macrophage-enriched B16F10 melanoma and 4T1 breast cancer in syngeneic mice, although IL9 treatment did not reduce tumor growth in the absence of macrophage enrichment. These results demonstrate the efficacy of IL9 in macrophage polarization to trigger antitumor immunity. SIGNIFICANCE: These findings clarified the effect of IL9 on macrophage M1 polarization and verified its antitumor potential through retraining TAMs and chemokine secretion.
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spelling pubmed-100355052023-03-24 IL9 Polarizes Macrophages to M1 and Induces the Infiltration of Antitumor Immune Cells via MIP-1 and CXCR3 Chemokines Do-Thi, Van Anh Park, Sang Min Park, Song Mi Jeong, Hye Jin Cho, Geunyoung An, Hyun-Jung Kim, Young Sang Lee, Hayyoung Lee, Jie-Oh Cancer Res Commun Research Article Tumor-associated macrophages (TAM) are involved in tumor progression, metastasis, and immunosuppression. Because TAMs are highly plastic and could alter their phenotypes to proinflammatory M1 in response to environmental stimuli, reeducating TAMs has emerged as a promising approach to overcoming the challenges of solid cancer treatment. This study investigated the effect of IL9 on macrophage M1 polarization and verified its antitumor potential to retrain TAMs and promote chemokine secretion. We demonstrated that IL9 stimulated macrophage proliferation and polarized them toward the proinflammatory M1 phenotype in an IFNγ-dependent manner. Tumor-localized IL9 also polarized TAMs toward M1 in vivo and made them release CCL3/4 and CXCL9/10 to recruit antitumor immune cells, including T and natural killer cells, into the tumor microenvironment. Furthermore, peritoneal treatment with recombinant IL9 delayed the growth of macrophage-enriched B16F10 melanoma and 4T1 breast cancer in syngeneic mice, although IL9 treatment did not reduce tumor growth in the absence of macrophage enrichment. These results demonstrate the efficacy of IL9 in macrophage polarization to trigger antitumor immunity. SIGNIFICANCE: These findings clarified the effect of IL9 on macrophage M1 polarization and verified its antitumor potential through retraining TAMs and chemokine secretion. American Association for Cancer Research 2023-01-18 /pmc/articles/PMC10035505/ /pubmed/36968220 http://dx.doi.org/10.1158/2767-9764.CRC-22-0246 Text en © 2023 The Authors; Published by the American Association for Cancer Research https://creativecommons.org/licenses/by/4.0/This open access article is distributed under the Creative Commons Attribution 4.0 International (CC BY 4.0) license.
spellingShingle Research Article
Do-Thi, Van Anh
Park, Sang Min
Park, Song Mi
Jeong, Hye Jin
Cho, Geunyoung
An, Hyun-Jung
Kim, Young Sang
Lee, Hayyoung
Lee, Jie-Oh
IL9 Polarizes Macrophages to M1 and Induces the Infiltration of Antitumor Immune Cells via MIP-1 and CXCR3 Chemokines
title IL9 Polarizes Macrophages to M1 and Induces the Infiltration of Antitumor Immune Cells via MIP-1 and CXCR3 Chemokines
title_full IL9 Polarizes Macrophages to M1 and Induces the Infiltration of Antitumor Immune Cells via MIP-1 and CXCR3 Chemokines
title_fullStr IL9 Polarizes Macrophages to M1 and Induces the Infiltration of Antitumor Immune Cells via MIP-1 and CXCR3 Chemokines
title_full_unstemmed IL9 Polarizes Macrophages to M1 and Induces the Infiltration of Antitumor Immune Cells via MIP-1 and CXCR3 Chemokines
title_short IL9 Polarizes Macrophages to M1 and Induces the Infiltration of Antitumor Immune Cells via MIP-1 and CXCR3 Chemokines
title_sort il9 polarizes macrophages to m1 and induces the infiltration of antitumor immune cells via mip-1 and cxcr3 chemokines
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10035505/
https://www.ncbi.nlm.nih.gov/pubmed/36968220
http://dx.doi.org/10.1158/2767-9764.CRC-22-0246
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