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Generation of GM-CSF-producing antigen-presenting cells that induce a cytotoxic T cell-mediated antitumor response
Immunotherapy using dendritic cells (DCs) is a promising treatment modality for cancer. However, the limited number of functional DCs from peripheral blood has been linked to the unsatisfactory clinical efficacies of current DC-based cancer immunotherapies. We previously generated proliferating anti...
Autores principales: | , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
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Taylor & Francis
2020
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7781730/ https://www.ncbi.nlm.nih.gov/pubmed/33457097 http://dx.doi.org/10.1080/2162402X.2020.1814620 |
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author | Mashima, Hiroaki Zhang, Rong Kobayashi, Tsuyoshi Hagiya, Yuichiro Tsukamoto, Hirotake Liu, Tianyi Iwama, Tatsuaki Yamamoto, Masateru Lin, Chiahsuan Nakatsuka, Ryusuke Mishima, Yuta Watanabe, Noriko Yamada, Takashi Senju, Satoru Kaneko, Shin Idiris, Alimjan Nakatsura, Tetsuya Ohdan, Hideki Uemura, Yasushi |
author_facet | Mashima, Hiroaki Zhang, Rong Kobayashi, Tsuyoshi Hagiya, Yuichiro Tsukamoto, Hirotake Liu, Tianyi Iwama, Tatsuaki Yamamoto, Masateru Lin, Chiahsuan Nakatsuka, Ryusuke Mishima, Yuta Watanabe, Noriko Yamada, Takashi Senju, Satoru Kaneko, Shin Idiris, Alimjan Nakatsura, Tetsuya Ohdan, Hideki Uemura, Yasushi |
author_sort | Mashima, Hiroaki |
collection | PubMed |
description | Immunotherapy using dendritic cells (DCs) is a promising treatment modality for cancer. However, the limited number of functional DCs from peripheral blood has been linked to the unsatisfactory clinical efficacies of current DC-based cancer immunotherapies. We previously generated proliferating antigen-presenting cells (APCs) by genetically engineering myeloid cells derived from induced pluripotent stem cells (iPSC-pMCs), which offer infinite functional APCs for broad applications in cancer therapy. Herein, we aimed to further enhance the antitumor effect of these cells by genetic modification. GM-CSF gene transfer did not affect the morphology, or surface phenotype of the original iPSC-pMCs, however, it did impart good viability to iPSC-pMCs. The resultant cells induced GM-CSF-dependent CD8(+) T cell homeostatic proliferation, thereby enhancing antigen-specific T cell priming in vitro. Administration of the tumor antigen-loaded GM-CSF-producing iPSC-pMCs (GM-pMCs) efficiently stimulated antigen-specific T cells and promoted effector cell infiltration of the tumor tissues, leading to an augmented antitumor effect. To address the potential tumorigenicity of iPSC-derived products, irradiation was applied and found to restrict the proliferation of GM-pMCs, while retaining their T cell-stimulatory capacity. Furthermore, the irradiated cells exerted an antitumor effect equivalent to that of bone marrow-derived DCs obtained from immunocompetent mice. Additionally, combination with immune checkpoint inhibitors increased the infiltration of CD8(+) or NK1.1(+) effector cells and decreased CD11b(+)/Gr-1(+) cells without causing adverse effects. Hence, although GM-pMCs have certain characteristics that differ from endogenous DCs, our findings suggest the applicability of these cells for broad clinical use and will provide an unlimited source of APCs with uniform quality. |
format | Online Article Text |
id | pubmed-7781730 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | Taylor & Francis |
record_format | MEDLINE/PubMed |
spelling | pubmed-77817302021-01-14 Generation of GM-CSF-producing antigen-presenting cells that induce a cytotoxic T cell-mediated antitumor response Mashima, Hiroaki Zhang, Rong Kobayashi, Tsuyoshi Hagiya, Yuichiro Tsukamoto, Hirotake Liu, Tianyi Iwama, Tatsuaki Yamamoto, Masateru Lin, Chiahsuan Nakatsuka, Ryusuke Mishima, Yuta Watanabe, Noriko Yamada, Takashi Senju, Satoru Kaneko, Shin Idiris, Alimjan Nakatsura, Tetsuya Ohdan, Hideki Uemura, Yasushi Oncoimmunology Research Article Immunotherapy using dendritic cells (DCs) is a promising treatment modality for cancer. However, the limited number of functional DCs from peripheral blood has been linked to the unsatisfactory clinical efficacies of current DC-based cancer immunotherapies. We previously generated proliferating antigen-presenting cells (APCs) by genetically engineering myeloid cells derived from induced pluripotent stem cells (iPSC-pMCs), which offer infinite functional APCs for broad applications in cancer therapy. Herein, we aimed to further enhance the antitumor effect of these cells by genetic modification. GM-CSF gene transfer did not affect the morphology, or surface phenotype of the original iPSC-pMCs, however, it did impart good viability to iPSC-pMCs. The resultant cells induced GM-CSF-dependent CD8(+) T cell homeostatic proliferation, thereby enhancing antigen-specific T cell priming in vitro. Administration of the tumor antigen-loaded GM-CSF-producing iPSC-pMCs (GM-pMCs) efficiently stimulated antigen-specific T cells and promoted effector cell infiltration of the tumor tissues, leading to an augmented antitumor effect. To address the potential tumorigenicity of iPSC-derived products, irradiation was applied and found to restrict the proliferation of GM-pMCs, while retaining their T cell-stimulatory capacity. Furthermore, the irradiated cells exerted an antitumor effect equivalent to that of bone marrow-derived DCs obtained from immunocompetent mice. Additionally, combination with immune checkpoint inhibitors increased the infiltration of CD8(+) or NK1.1(+) effector cells and decreased CD11b(+)/Gr-1(+) cells without causing adverse effects. Hence, although GM-pMCs have certain characteristics that differ from endogenous DCs, our findings suggest the applicability of these cells for broad clinical use and will provide an unlimited source of APCs with uniform quality. Taylor & Francis 2020-09-06 /pmc/articles/PMC7781730/ /pubmed/33457097 http://dx.doi.org/10.1080/2162402X.2020.1814620 Text en © 2020 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. |
spellingShingle | Research Article Mashima, Hiroaki Zhang, Rong Kobayashi, Tsuyoshi Hagiya, Yuichiro Tsukamoto, Hirotake Liu, Tianyi Iwama, Tatsuaki Yamamoto, Masateru Lin, Chiahsuan Nakatsuka, Ryusuke Mishima, Yuta Watanabe, Noriko Yamada, Takashi Senju, Satoru Kaneko, Shin Idiris, Alimjan Nakatsura, Tetsuya Ohdan, Hideki Uemura, Yasushi Generation of GM-CSF-producing antigen-presenting cells that induce a cytotoxic T cell-mediated antitumor response |
title | Generation of GM-CSF-producing antigen-presenting cells that induce a cytotoxic T cell-mediated antitumor response |
title_full | Generation of GM-CSF-producing antigen-presenting cells that induce a cytotoxic T cell-mediated antitumor response |
title_fullStr | Generation of GM-CSF-producing antigen-presenting cells that induce a cytotoxic T cell-mediated antitumor response |
title_full_unstemmed | Generation of GM-CSF-producing antigen-presenting cells that induce a cytotoxic T cell-mediated antitumor response |
title_short | Generation of GM-CSF-producing antigen-presenting cells that induce a cytotoxic T cell-mediated antitumor response |
title_sort | generation of gm-csf-producing antigen-presenting cells that induce a cytotoxic t cell-mediated antitumor response |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7781730/ https://www.ncbi.nlm.nih.gov/pubmed/33457097 http://dx.doi.org/10.1080/2162402X.2020.1814620 |
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