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Human PBMC-transferred murine MHC class I/II-deficient NOG mice enable long-term evaluation of human immune responses

Immunodeficient mice engrafted with human peripheral blood cells are promising tools for in vivo analysis of human patient individual immune responses. However, when human peripheral blood mononuclear cells (PBMCs) are transferred into NOG (NOD/Shi-scid, IL-2rg (null)) mice, severe graft versus host...

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Autores principales: Yaguchi, Tomonori, Kobayashi, Asuka, Inozume, Takashi, Morii, Kenji, Nagumo, Haruna, Nishio, Hiroshi, Iwata, Takashi, Ka, Yuyo, Katano, Ikumi, Ito, Ryoji, Ito, Mamoru, Kawakami, Yutaka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6207709/
https://www.ncbi.nlm.nih.gov/pubmed/29151581
http://dx.doi.org/10.1038/cmi.2017.106
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author Yaguchi, Tomonori
Kobayashi, Asuka
Inozume, Takashi
Morii, Kenji
Nagumo, Haruna
Nishio, Hiroshi
Iwata, Takashi
Ka, Yuyo
Katano, Ikumi
Ito, Ryoji
Ito, Mamoru
Kawakami, Yutaka
author_facet Yaguchi, Tomonori
Kobayashi, Asuka
Inozume, Takashi
Morii, Kenji
Nagumo, Haruna
Nishio, Hiroshi
Iwata, Takashi
Ka, Yuyo
Katano, Ikumi
Ito, Ryoji
Ito, Mamoru
Kawakami, Yutaka
author_sort Yaguchi, Tomonori
collection PubMed
description Immunodeficient mice engrafted with human peripheral blood cells are promising tools for in vivo analysis of human patient individual immune responses. However, when human peripheral blood mononuclear cells (PBMCs) are transferred into NOG (NOD/Shi-scid, IL-2rg (null)) mice, severe graft versus host disease (GVHD) hinders long term detailed analysis. Administration of human PBMCs into newly developed murine MHC class I- and class II-deficient NOG (NOG-dKO; NOG- Iab, B2m-double-knockout) mice showed sufficient engraftment of human immune cells with little sign of GVHD. Immunization with influenza vaccine resulted in an increase in influenza-specific human IgG Ab, indicating induction of antigen-specific B cells in the NOG-dKO mice. Immunization with human dendritic cells pulsed with HLA-A2 restricted cytomegalovirus peptide induced specific cytotoxic T cells, indicating the induction of antigen-specific T cells in the NOG-dKO mice. Adoptive cell therapies (ACTs) using melanoma antigen recognized by T cells (MART-1)-specific TCR-transduced activated T cells showed strong tumor growth inhibition in NOG-dKO mice without any sign of GVHD accompanied by preferential expansion of the transferred MART-1-specific T cells. ACTs using cultured human melanoma infiltrating T cells also showed anti-tumor effects against autologous melanoma cells in NOG-dKO mice, in which changes in human cancer phenotypes by immune intervention, such as increased CD271 expression, could be evaluated. Therefore, NOG-dKO mice are useful tools for more detailed analysis of both the induction and effector phases of T-cell and B-cell responses for a longer period than regular NOG mice.
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spelling pubmed-62077092019-11-01 Human PBMC-transferred murine MHC class I/II-deficient NOG mice enable long-term evaluation of human immune responses Yaguchi, Tomonori Kobayashi, Asuka Inozume, Takashi Morii, Kenji Nagumo, Haruna Nishio, Hiroshi Iwata, Takashi Ka, Yuyo Katano, Ikumi Ito, Ryoji Ito, Mamoru Kawakami, Yutaka Cell Mol Immunol Article Immunodeficient mice engrafted with human peripheral blood cells are promising tools for in vivo analysis of human patient individual immune responses. However, when human peripheral blood mononuclear cells (PBMCs) are transferred into NOG (NOD/Shi-scid, IL-2rg (null)) mice, severe graft versus host disease (GVHD) hinders long term detailed analysis. Administration of human PBMCs into newly developed murine MHC class I- and class II-deficient NOG (NOG-dKO; NOG- Iab, B2m-double-knockout) mice showed sufficient engraftment of human immune cells with little sign of GVHD. Immunization with influenza vaccine resulted in an increase in influenza-specific human IgG Ab, indicating induction of antigen-specific B cells in the NOG-dKO mice. Immunization with human dendritic cells pulsed with HLA-A2 restricted cytomegalovirus peptide induced specific cytotoxic T cells, indicating the induction of antigen-specific T cells in the NOG-dKO mice. Adoptive cell therapies (ACTs) using melanoma antigen recognized by T cells (MART-1)-specific TCR-transduced activated T cells showed strong tumor growth inhibition in NOG-dKO mice without any sign of GVHD accompanied by preferential expansion of the transferred MART-1-specific T cells. ACTs using cultured human melanoma infiltrating T cells also showed anti-tumor effects against autologous melanoma cells in NOG-dKO mice, in which changes in human cancer phenotypes by immune intervention, such as increased CD271 expression, could be evaluated. Therefore, NOG-dKO mice are useful tools for more detailed analysis of both the induction and effector phases of T-cell and B-cell responses for a longer period than regular NOG mice. Nature Publishing Group UK 2017-11-20 2018-11 /pmc/articles/PMC6207709/ /pubmed/29151581 http://dx.doi.org/10.1038/cmi.2017.106 Text en © The Chinese Society of Immunology and The University of Science and Technology of China, All rights reserved 2017
spellingShingle Article
Yaguchi, Tomonori
Kobayashi, Asuka
Inozume, Takashi
Morii, Kenji
Nagumo, Haruna
Nishio, Hiroshi
Iwata, Takashi
Ka, Yuyo
Katano, Ikumi
Ito, Ryoji
Ito, Mamoru
Kawakami, Yutaka
Human PBMC-transferred murine MHC class I/II-deficient NOG mice enable long-term evaluation of human immune responses
title Human PBMC-transferred murine MHC class I/II-deficient NOG mice enable long-term evaluation of human immune responses
title_full Human PBMC-transferred murine MHC class I/II-deficient NOG mice enable long-term evaluation of human immune responses
title_fullStr Human PBMC-transferred murine MHC class I/II-deficient NOG mice enable long-term evaluation of human immune responses
title_full_unstemmed Human PBMC-transferred murine MHC class I/II-deficient NOG mice enable long-term evaluation of human immune responses
title_short Human PBMC-transferred murine MHC class I/II-deficient NOG mice enable long-term evaluation of human immune responses
title_sort human pbmc-transferred murine mhc class i/ii-deficient nog mice enable long-term evaluation of human immune responses
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6207709/
https://www.ncbi.nlm.nih.gov/pubmed/29151581
http://dx.doi.org/10.1038/cmi.2017.106
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