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A bioluminescence reporter mouse model for visualizing and quantifying CD8+ T cells in vivo

Cytotoxic CD8+ T cells are the primary effector cells mediating anti-tumor responses. In vivo monitoring of CD8+ T cells has broad implications for the development of novel cancer therapies. Here we describe the development of a genetically engineered mouse model (GEMM) in which CD8+ T cells are lab...

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Autores principales: Bettano, Kimberly, Zielstorff, Mark, Sevilla, Raquel, Yang, Ruojing, Zhou, Heather, Rosahl, Thomas, Zhang-Hoover, Jie, Moy, Lily Y., Zhang, Weisheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Neoplasia Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8980487/
https://www.ncbi.nlm.nih.gov/pubmed/35381456
http://dx.doi.org/10.1016/j.neo.2022.100781
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author Bettano, Kimberly
Zielstorff, Mark
Sevilla, Raquel
Yang, Ruojing
Zhou, Heather
Rosahl, Thomas
Zhang-Hoover, Jie
Moy, Lily Y.
Zhang, Weisheng
author_facet Bettano, Kimberly
Zielstorff, Mark
Sevilla, Raquel
Yang, Ruojing
Zhou, Heather
Rosahl, Thomas
Zhang-Hoover, Jie
Moy, Lily Y.
Zhang, Weisheng
author_sort Bettano, Kimberly
collection PubMed
description Cytotoxic CD8+ T cells are the primary effector cells mediating anti-tumor responses. In vivo monitoring of CD8+ T cells has broad implications for the development of novel cancer therapies. Here we describe the development of a genetically engineered mouse model (GEMM) in which CD8+ T cells are labeled with an optical reporter, enabling in vivo, longitudinal monitoring using bioluminescence imaging (BLI). Firefly luciferase (Luc2), human diphtheria toxin receptor (DTR), and enhanced green fluorescence protein (eGFP) cDNAs are engineered under the CD8α promoter to generate a transgenic mouse line. Luciferase mRNA and CD8α mRNA were generally correlated in various tissues from these mice. Sorted splenic CD8+ T cells, CD4+ T cells and CD3- non-T cells verified that the luciferase signal is specific to CD8+ T cells. In vivo imaging showed that luciferase signal was detected in various immune organs, such as lymph nodes, thymus, and spleen, and the detection was confirmed by ex vivo examination. Administration of diphtheria toxin markedly reduced luciferase signal systemically, confirming the function of the DTR. In the MC38 mouse syngeneic model, we observed significant increases in CD8+ T cells with mDX400 treatment, an anti PD-1 mouse monoclonal antibody that correlated with tumor growth inhibition. This novel reporter GEMM is a valuable drug discovery tool for profiling compounds and understanding mechanisms of action in immunotherapy of cancer.
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spelling pubmed-89804872022-04-15 A bioluminescence reporter mouse model for visualizing and quantifying CD8+ T cells in vivo Bettano, Kimberly Zielstorff, Mark Sevilla, Raquel Yang, Ruojing Zhou, Heather Rosahl, Thomas Zhang-Hoover, Jie Moy, Lily Y. Zhang, Weisheng Neoplasia Original article Cytotoxic CD8+ T cells are the primary effector cells mediating anti-tumor responses. In vivo monitoring of CD8+ T cells has broad implications for the development of novel cancer therapies. Here we describe the development of a genetically engineered mouse model (GEMM) in which CD8+ T cells are labeled with an optical reporter, enabling in vivo, longitudinal monitoring using bioluminescence imaging (BLI). Firefly luciferase (Luc2), human diphtheria toxin receptor (DTR), and enhanced green fluorescence protein (eGFP) cDNAs are engineered under the CD8α promoter to generate a transgenic mouse line. Luciferase mRNA and CD8α mRNA were generally correlated in various tissues from these mice. Sorted splenic CD8+ T cells, CD4+ T cells and CD3- non-T cells verified that the luciferase signal is specific to CD8+ T cells. In vivo imaging showed that luciferase signal was detected in various immune organs, such as lymph nodes, thymus, and spleen, and the detection was confirmed by ex vivo examination. Administration of diphtheria toxin markedly reduced luciferase signal systemically, confirming the function of the DTR. In the MC38 mouse syngeneic model, we observed significant increases in CD8+ T cells with mDX400 treatment, an anti PD-1 mouse monoclonal antibody that correlated with tumor growth inhibition. This novel reporter GEMM is a valuable drug discovery tool for profiling compounds and understanding mechanisms of action in immunotherapy of cancer. Neoplasia Press 2022-04-02 /pmc/articles/PMC8980487/ /pubmed/35381456 http://dx.doi.org/10.1016/j.neo.2022.100781 Text en © 2022 Ms. Kimberly Bettano. Published by Elsevier Inc. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original article
Bettano, Kimberly
Zielstorff, Mark
Sevilla, Raquel
Yang, Ruojing
Zhou, Heather
Rosahl, Thomas
Zhang-Hoover, Jie
Moy, Lily Y.
Zhang, Weisheng
A bioluminescence reporter mouse model for visualizing and quantifying CD8+ T cells in vivo
title A bioluminescence reporter mouse model for visualizing and quantifying CD8+ T cells in vivo
title_full A bioluminescence reporter mouse model for visualizing and quantifying CD8+ T cells in vivo
title_fullStr A bioluminescence reporter mouse model for visualizing and quantifying CD8+ T cells in vivo
title_full_unstemmed A bioluminescence reporter mouse model for visualizing and quantifying CD8+ T cells in vivo
title_short A bioluminescence reporter mouse model for visualizing and quantifying CD8+ T cells in vivo
title_sort bioluminescence reporter mouse model for visualizing and quantifying cd8+ t cells in vivo
topic Original article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8980487/
https://www.ncbi.nlm.nih.gov/pubmed/35381456
http://dx.doi.org/10.1016/j.neo.2022.100781
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