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Redirection to the bone marrow improves T cell persistence and antitumor functions

A key predictor for the success of gene-modified T cell therapies for cancer is the persistence of transferred cells in the patient. The propensity of less differentiated memory T cells to expand and survive efficiently has therefore made them attractive candidates for clinical application. We hypot...

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Autores principales: Khan, Anjum B., Carpenter, Ben, Santos e Sousa, Pedro, Pospori, Constandina, Khorshed, Reema, Griffin, James, Velica, Pedro, Zech, Mathias, Ghorashian, Sara, Forrest, Calum, Thomas, Sharyn, Gonzalez Anton, Sara, Ahmadi, Maryam, Holler, Angelika, Flutter, Barry, Ramirez-Ortiz, Zaida, Means, Terry K., Bennett, Clare L., Stauss, Hans, Morris, Emma, Lo Celso, Cristina, Chakraverty, Ronjon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5919805/
https://www.ncbi.nlm.nih.gov/pubmed/29485974
http://dx.doi.org/10.1172/JCI97454
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author Khan, Anjum B.
Carpenter, Ben
Santos e Sousa, Pedro
Pospori, Constandina
Khorshed, Reema
Griffin, James
Velica, Pedro
Zech, Mathias
Ghorashian, Sara
Forrest, Calum
Thomas, Sharyn
Gonzalez Anton, Sara
Ahmadi, Maryam
Holler, Angelika
Flutter, Barry
Ramirez-Ortiz, Zaida
Means, Terry K.
Bennett, Clare L.
Stauss, Hans
Morris, Emma
Lo Celso, Cristina
Chakraverty, Ronjon
author_facet Khan, Anjum B.
Carpenter, Ben
Santos e Sousa, Pedro
Pospori, Constandina
Khorshed, Reema
Griffin, James
Velica, Pedro
Zech, Mathias
Ghorashian, Sara
Forrest, Calum
Thomas, Sharyn
Gonzalez Anton, Sara
Ahmadi, Maryam
Holler, Angelika
Flutter, Barry
Ramirez-Ortiz, Zaida
Means, Terry K.
Bennett, Clare L.
Stauss, Hans
Morris, Emma
Lo Celso, Cristina
Chakraverty, Ronjon
author_sort Khan, Anjum B.
collection PubMed
description A key predictor for the success of gene-modified T cell therapies for cancer is the persistence of transferred cells in the patient. The propensity of less differentiated memory T cells to expand and survive efficiently has therefore made them attractive candidates for clinical application. We hypothesized that redirecting T cells to specialized niches in the BM that support memory differentiation would confer increased therapeutic efficacy. We show that overexpression of chemokine receptor CXCR4 in CD8(+) T cells (T(CXCR4)) enhanced their migration toward vascular-associated CXCL12(+) cells in the BM and increased their local engraftment. Increased access of T(CXCR4) to the BM microenvironment induced IL-15–dependent homeostatic expansion and promoted the differentiation of memory precursor–like cells with low expression of programmed death-1, resistance to apoptosis, and a heightened capacity to generate polyfunctional cytokine-producing effector cells. Following transfer to lymphoma-bearing mice, T(CXCR4) showed a greater capacity for effector expansion and better tumor protection, the latter being independent of changes in trafficking to the tumor bed or local out-competition of regulatory T cells. Thus, redirected homing of T cells to the BM confers increased memory differentiation and antitumor immunity, suggesting an innovative solution to increase the persistence and functions of therapeutic T cells.
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spelling pubmed-59198052018-05-18 Redirection to the bone marrow improves T cell persistence and antitumor functions Khan, Anjum B. Carpenter, Ben Santos e Sousa, Pedro Pospori, Constandina Khorshed, Reema Griffin, James Velica, Pedro Zech, Mathias Ghorashian, Sara Forrest, Calum Thomas, Sharyn Gonzalez Anton, Sara Ahmadi, Maryam Holler, Angelika Flutter, Barry Ramirez-Ortiz, Zaida Means, Terry K. Bennett, Clare L. Stauss, Hans Morris, Emma Lo Celso, Cristina Chakraverty, Ronjon J Clin Invest Research Article A key predictor for the success of gene-modified T cell therapies for cancer is the persistence of transferred cells in the patient. The propensity of less differentiated memory T cells to expand and survive efficiently has therefore made them attractive candidates for clinical application. We hypothesized that redirecting T cells to specialized niches in the BM that support memory differentiation would confer increased therapeutic efficacy. We show that overexpression of chemokine receptor CXCR4 in CD8(+) T cells (T(CXCR4)) enhanced their migration toward vascular-associated CXCL12(+) cells in the BM and increased their local engraftment. Increased access of T(CXCR4) to the BM microenvironment induced IL-15–dependent homeostatic expansion and promoted the differentiation of memory precursor–like cells with low expression of programmed death-1, resistance to apoptosis, and a heightened capacity to generate polyfunctional cytokine-producing effector cells. Following transfer to lymphoma-bearing mice, T(CXCR4) showed a greater capacity for effector expansion and better tumor protection, the latter being independent of changes in trafficking to the tumor bed or local out-competition of regulatory T cells. Thus, redirected homing of T cells to the BM confers increased memory differentiation and antitumor immunity, suggesting an innovative solution to increase the persistence and functions of therapeutic T cells. American Society for Clinical Investigation 2018-04-09 2018-05-01 /pmc/articles/PMC5919805/ /pubmed/29485974 http://dx.doi.org/10.1172/JCI97454 Text en Copyright © 2018 Khan et al. http://creativecommons.org/licenses/by/4.0/ This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Research Article
Khan, Anjum B.
Carpenter, Ben
Santos e Sousa, Pedro
Pospori, Constandina
Khorshed, Reema
Griffin, James
Velica, Pedro
Zech, Mathias
Ghorashian, Sara
Forrest, Calum
Thomas, Sharyn
Gonzalez Anton, Sara
Ahmadi, Maryam
Holler, Angelika
Flutter, Barry
Ramirez-Ortiz, Zaida
Means, Terry K.
Bennett, Clare L.
Stauss, Hans
Morris, Emma
Lo Celso, Cristina
Chakraverty, Ronjon
Redirection to the bone marrow improves T cell persistence and antitumor functions
title Redirection to the bone marrow improves T cell persistence and antitumor functions
title_full Redirection to the bone marrow improves T cell persistence and antitumor functions
title_fullStr Redirection to the bone marrow improves T cell persistence and antitumor functions
title_full_unstemmed Redirection to the bone marrow improves T cell persistence and antitumor functions
title_short Redirection to the bone marrow improves T cell persistence and antitumor functions
title_sort redirection to the bone marrow improves t cell persistence and antitumor functions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5919805/
https://www.ncbi.nlm.nih.gov/pubmed/29485974
http://dx.doi.org/10.1172/JCI97454
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