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GM-CSF disruption in CART cells modulates T cell activation and enhances CART cell anti-tumor activity

Inhibitory myeloid cells and their cytokines play critical roles in limiting chimeric antigen receptor T (CART) cell therapy by contributing to the development of toxicities and resistance following infusion. We have previously shown that neutralization of granulocyte-macrophage colony-stimulating f...

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Autores principales: Cox, Michelle J., Roman, Claudia Manriquez, Tapper, Erin E., Siegler, Elizabeth L., Chappell, Dale, Durrant, Cameron, Ahmed, Omar, Sinha, Sutapa, Mwangi, Raphael, Scott, Nancy S., Hefazi, Mehrdad, Schick, Kendall J., Horvei, Paulina, Ruff, Michael W., Can, Ismail, Adada, Mohamad, Bezerra, Evandro, Fonkoua, Lionel Aurelien Kankeu, Parikh, Sameer A., Kay, Neil E., Sakemura, Reona, Kenderian, Saad S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9234947/
https://www.ncbi.nlm.nih.gov/pubmed/35440691
http://dx.doi.org/10.1038/s41375-022-01572-7
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author Cox, Michelle J.
Roman, Claudia Manriquez
Tapper, Erin E.
Siegler, Elizabeth L.
Chappell, Dale
Durrant, Cameron
Ahmed, Omar
Sinha, Sutapa
Mwangi, Raphael
Scott, Nancy S.
Hefazi, Mehrdad
Schick, Kendall J.
Horvei, Paulina
Ruff, Michael W.
Can, Ismail
Adada, Mohamad
Bezerra, Evandro
Fonkoua, Lionel Aurelien Kankeu
Parikh, Sameer A.
Kay, Neil E.
Sakemura, Reona
Kenderian, Saad S.
author_facet Cox, Michelle J.
Roman, Claudia Manriquez
Tapper, Erin E.
Siegler, Elizabeth L.
Chappell, Dale
Durrant, Cameron
Ahmed, Omar
Sinha, Sutapa
Mwangi, Raphael
Scott, Nancy S.
Hefazi, Mehrdad
Schick, Kendall J.
Horvei, Paulina
Ruff, Michael W.
Can, Ismail
Adada, Mohamad
Bezerra, Evandro
Fonkoua, Lionel Aurelien Kankeu
Parikh, Sameer A.
Kay, Neil E.
Sakemura, Reona
Kenderian, Saad S.
author_sort Cox, Michelle J.
collection PubMed
description Inhibitory myeloid cells and their cytokines play critical roles in limiting chimeric antigen receptor T (CART) cell therapy by contributing to the development of toxicities and resistance following infusion. We have previously shown that neutralization of granulocyte-macrophage colony-stimulating factor (GM-CSF) prevents these toxicities and enhances CART cell functions by inhibiting myeloid cell activation. In this report, we study the direct impact of GM-CSF disruption during the production of CD19-directed CART cells on their effector functions, independent of GM-CSF modulation of myeloid cells. In this study, we show that antigen-specific activation of GM-CSF(KO) CART19 cells consistently displayed reduced early activation, enhanced proliferation, and improved anti-tumor activity in a xenograft model for relapsed B cell malignancies. Activated CART19 cells significantly upregulate GM-CSF receptors. However, the interaction between GM-CSF and its upregulated receptors on CART cells was not the predominant mechanism of this activation phenotype. GM-CSF(KO) CART19 cell had reduced BH3 interacting-domain death agonist (Bid), suggesting an interaction between GM-CSF and intrinsic apoptosis pathways. In conclusion, our study demonstrates that CRISPR/Cas9-mediated GM-CSF knockout in CART cells directly ameliorates CART cell early activation and enhances anti-tumor activity in preclinical models.
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spelling pubmed-92349472022-10-19 GM-CSF disruption in CART cells modulates T cell activation and enhances CART cell anti-tumor activity Cox, Michelle J. Roman, Claudia Manriquez Tapper, Erin E. Siegler, Elizabeth L. Chappell, Dale Durrant, Cameron Ahmed, Omar Sinha, Sutapa Mwangi, Raphael Scott, Nancy S. Hefazi, Mehrdad Schick, Kendall J. Horvei, Paulina Ruff, Michael W. Can, Ismail Adada, Mohamad Bezerra, Evandro Fonkoua, Lionel Aurelien Kankeu Parikh, Sameer A. Kay, Neil E. Sakemura, Reona Kenderian, Saad S. Leukemia Article Inhibitory myeloid cells and their cytokines play critical roles in limiting chimeric antigen receptor T (CART) cell therapy by contributing to the development of toxicities and resistance following infusion. We have previously shown that neutralization of granulocyte-macrophage colony-stimulating factor (GM-CSF) prevents these toxicities and enhances CART cell functions by inhibiting myeloid cell activation. In this report, we study the direct impact of GM-CSF disruption during the production of CD19-directed CART cells on their effector functions, independent of GM-CSF modulation of myeloid cells. In this study, we show that antigen-specific activation of GM-CSF(KO) CART19 cells consistently displayed reduced early activation, enhanced proliferation, and improved anti-tumor activity in a xenograft model for relapsed B cell malignancies. Activated CART19 cells significantly upregulate GM-CSF receptors. However, the interaction between GM-CSF and its upregulated receptors on CART cells was not the predominant mechanism of this activation phenotype. GM-CSF(KO) CART19 cell had reduced BH3 interacting-domain death agonist (Bid), suggesting an interaction between GM-CSF and intrinsic apoptosis pathways. In conclusion, our study demonstrates that CRISPR/Cas9-mediated GM-CSF knockout in CART cells directly ameliorates CART cell early activation and enhances anti-tumor activity in preclinical models. 2022-06 2022-04-19 /pmc/articles/PMC9234947/ /pubmed/35440691 http://dx.doi.org/10.1038/s41375-022-01572-7 Text en http://www.nature.com/authors/editorial_policies/license.html#termsUsers may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Cox, Michelle J.
Roman, Claudia Manriquez
Tapper, Erin E.
Siegler, Elizabeth L.
Chappell, Dale
Durrant, Cameron
Ahmed, Omar
Sinha, Sutapa
Mwangi, Raphael
Scott, Nancy S.
Hefazi, Mehrdad
Schick, Kendall J.
Horvei, Paulina
Ruff, Michael W.
Can, Ismail
Adada, Mohamad
Bezerra, Evandro
Fonkoua, Lionel Aurelien Kankeu
Parikh, Sameer A.
Kay, Neil E.
Sakemura, Reona
Kenderian, Saad S.
GM-CSF disruption in CART cells modulates T cell activation and enhances CART cell anti-tumor activity
title GM-CSF disruption in CART cells modulates T cell activation and enhances CART cell anti-tumor activity
title_full GM-CSF disruption in CART cells modulates T cell activation and enhances CART cell anti-tumor activity
title_fullStr GM-CSF disruption in CART cells modulates T cell activation and enhances CART cell anti-tumor activity
title_full_unstemmed GM-CSF disruption in CART cells modulates T cell activation and enhances CART cell anti-tumor activity
title_short GM-CSF disruption in CART cells modulates T cell activation and enhances CART cell anti-tumor activity
title_sort gm-csf disruption in cart cells modulates t cell activation and enhances cart cell anti-tumor activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9234947/
https://www.ncbi.nlm.nih.gov/pubmed/35440691
http://dx.doi.org/10.1038/s41375-022-01572-7
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