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Arginine deprivation alters microglial polarity and synergizes with radiation to eradicate non-arginine-auxotrophic glioblastoma tumors

New approaches for the management of glioblastoma (GBM) are an urgent and unmet clinical need. Here, we illustrate that the efficacy of radiotherapy for GBM is strikingly potentiated by concomitant therapy with the arginine-depleting agent ADI-PEG20 in a non-arginine-auxotrophic cellular background...

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Autores principales: Hajji, Nabil, Garcia-Revilla, Juan, Soto, Manuel Sarmiento, Perryman, Richard, Symington, Jake, Quarles, Chad C., Healey, Deborah R., Guo, Yijie, Orta-Vázquez, Manuel Luis, Mateos-Cordero, Santiago, Shah, Khalid, Bomalaski, John, Anichini, Giulio, Tzakos, Andreas G., Crook, Timothy, O’Neill, Kevin, Scheck, Adrienne C., Venero, Jose Luis, Syed, Nelofer
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8920336/
https://www.ncbi.nlm.nih.gov/pubmed/35113813
http://dx.doi.org/10.1172/JCI142137
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author Hajji, Nabil
Garcia-Revilla, Juan
Soto, Manuel Sarmiento
Perryman, Richard
Symington, Jake
Quarles, Chad C.
Healey, Deborah R.
Guo, Yijie
Orta-Vázquez, Manuel Luis
Mateos-Cordero, Santiago
Shah, Khalid
Bomalaski, John
Anichini, Giulio
Tzakos, Andreas G.
Crook, Timothy
O’Neill, Kevin
Scheck, Adrienne C.
Venero, Jose Luis
Syed, Nelofer
author_facet Hajji, Nabil
Garcia-Revilla, Juan
Soto, Manuel Sarmiento
Perryman, Richard
Symington, Jake
Quarles, Chad C.
Healey, Deborah R.
Guo, Yijie
Orta-Vázquez, Manuel Luis
Mateos-Cordero, Santiago
Shah, Khalid
Bomalaski, John
Anichini, Giulio
Tzakos, Andreas G.
Crook, Timothy
O’Neill, Kevin
Scheck, Adrienne C.
Venero, Jose Luis
Syed, Nelofer
author_sort Hajji, Nabil
collection PubMed
description New approaches for the management of glioblastoma (GBM) are an urgent and unmet clinical need. Here, we illustrate that the efficacy of radiotherapy for GBM is strikingly potentiated by concomitant therapy with the arginine-depleting agent ADI-PEG20 in a non-arginine-auxotrophic cellular background (argininosuccinate synthetase 1 positive). Moreover, this combination led to durable and complete radiological and pathological response, with extended disease-free survival in an orthotopic immune-competent model of GBM, with no significant toxicity. ADI-PEG20 not only enhanced the cellular sensitivity of argininosuccinate synthetase 1–positive GBM to ionizing radiation by elevated production of nitric oxide (˙NO) and hence generation of cytotoxic peroxynitrites, but also promoted glioma-associated macrophage/microglial infiltration into tumors and turned their classical antiinflammatory (protumor) phenotype into a proinflammatory (antitumor) phenotype. Our results provide an effective, well-tolerated, and simple strategy to improve GBM treatment that merits consideration for early evaluation in clinical trials.
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spelling pubmed-89203362022-03-19 Arginine deprivation alters microglial polarity and synergizes with radiation to eradicate non-arginine-auxotrophic glioblastoma tumors Hajji, Nabil Garcia-Revilla, Juan Soto, Manuel Sarmiento Perryman, Richard Symington, Jake Quarles, Chad C. Healey, Deborah R. Guo, Yijie Orta-Vázquez, Manuel Luis Mateos-Cordero, Santiago Shah, Khalid Bomalaski, John Anichini, Giulio Tzakos, Andreas G. Crook, Timothy O’Neill, Kevin Scheck, Adrienne C. Venero, Jose Luis Syed, Nelofer J Clin Invest Research Article New approaches for the management of glioblastoma (GBM) are an urgent and unmet clinical need. Here, we illustrate that the efficacy of radiotherapy for GBM is strikingly potentiated by concomitant therapy with the arginine-depleting agent ADI-PEG20 in a non-arginine-auxotrophic cellular background (argininosuccinate synthetase 1 positive). Moreover, this combination led to durable and complete radiological and pathological response, with extended disease-free survival in an orthotopic immune-competent model of GBM, with no significant toxicity. ADI-PEG20 not only enhanced the cellular sensitivity of argininosuccinate synthetase 1–positive GBM to ionizing radiation by elevated production of nitric oxide (˙NO) and hence generation of cytotoxic peroxynitrites, but also promoted glioma-associated macrophage/microglial infiltration into tumors and turned their classical antiinflammatory (protumor) phenotype into a proinflammatory (antitumor) phenotype. Our results provide an effective, well-tolerated, and simple strategy to improve GBM treatment that merits consideration for early evaluation in clinical trials. American Society for Clinical Investigation 2022-03-15 2022-03-15 /pmc/articles/PMC8920336/ /pubmed/35113813 http://dx.doi.org/10.1172/JCI142137 Text en © 2022 Hajji et al. https://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/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Hajji, Nabil
Garcia-Revilla, Juan
Soto, Manuel Sarmiento
Perryman, Richard
Symington, Jake
Quarles, Chad C.
Healey, Deborah R.
Guo, Yijie
Orta-Vázquez, Manuel Luis
Mateos-Cordero, Santiago
Shah, Khalid
Bomalaski, John
Anichini, Giulio
Tzakos, Andreas G.
Crook, Timothy
O’Neill, Kevin
Scheck, Adrienne C.
Venero, Jose Luis
Syed, Nelofer
Arginine deprivation alters microglial polarity and synergizes with radiation to eradicate non-arginine-auxotrophic glioblastoma tumors
title Arginine deprivation alters microglial polarity and synergizes with radiation to eradicate non-arginine-auxotrophic glioblastoma tumors
title_full Arginine deprivation alters microglial polarity and synergizes with radiation to eradicate non-arginine-auxotrophic glioblastoma tumors
title_fullStr Arginine deprivation alters microglial polarity and synergizes with radiation to eradicate non-arginine-auxotrophic glioblastoma tumors
title_full_unstemmed Arginine deprivation alters microglial polarity and synergizes with radiation to eradicate non-arginine-auxotrophic glioblastoma tumors
title_short Arginine deprivation alters microglial polarity and synergizes with radiation to eradicate non-arginine-auxotrophic glioblastoma tumors
title_sort arginine deprivation alters microglial polarity and synergizes with radiation to eradicate non-arginine-auxotrophic glioblastoma tumors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8920336/
https://www.ncbi.nlm.nih.gov/pubmed/35113813
http://dx.doi.org/10.1172/JCI142137
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