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Stratification of radiosensitive brain metastases based on an actionable S100A9/RAGE resistance mechanism

Whole-brain radiotherapy (WBRT) is the treatment backbone for many patients with brain metastasis; however, its efficacy in preventing disease progression and the associated toxicity have questioned the clinical impact of this approach and emphasized the need for alternative treatments. Given the li...

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Autores principales: Monteiro, Cátia, Miarka, Lauritz, Perea-García, María, Priego, Neibla, García-Gómez, Pedro, Álvaro-Espinosa, Laura, de Pablos-Aragoneses, Ana, Yebra, Natalia, Retana, Diana, Baena, Patricia, Fustero-Torre, Coral, Graña-Castro, Osvaldo, Troulé, Kevin, Caleiras, Eduardo, Tezanos, Patricia, Muela, Pablo, Cintado, Elisa, Trejo, José Luis, Sepúlveda, Juan Manuel, González-León, Pedro, Jiménez-Roldán, Luis, Moreno, Luis Miguel, Esteban, Olga, Pérez-Núñez, Ángel, Hernández-Lain, Aurelio, Mazarico Gallego, José, Ferrer, Irene, Suárez, Rocío, Garrido-Martín, Eva M., Paz-Ares, Luis, Dalmasso, Celine, Cohen-Jonathan Moyal, Elizabeth, Siegfried, Aurore, Hegarty, Aisling, Keelan, Stephen, Varešlija, Damir, Young, Leonie S., Mohme, Malte, Goy, Yvonne, Wikman, Harriet, Fernández-Alén, Jose, Blasco, Guillermo, Alcázar, Lucía, Cabañuz, Clara, Grivennikov, Sergei I., Ianus, Andrada, Shemesh, Noam, Faria, Claudia C., Lee, Rebecca, Lorigan, Paul, Le Rhun, Emilie, Weller, Michael, Soffietti, Riccardo, Bertero, Luca, Ricardi, Umberto, Bosch-Barrera, Joaquim, Sais, Elia, Teixidor, Eduard, Hernández-Martínez, Alejandro, Calvo, Alfonso, Aristu, Javier, Martin, Santiago M., Gonzalez, Alvaro, Adler, Omer, Erez, Neta, Valiente, Manuel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group US 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9018424/
https://www.ncbi.nlm.nih.gov/pubmed/35411077
http://dx.doi.org/10.1038/s41591-022-01749-8
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author Monteiro, Cátia
Miarka, Lauritz
Perea-García, María
Priego, Neibla
García-Gómez, Pedro
Álvaro-Espinosa, Laura
de Pablos-Aragoneses, Ana
Yebra, Natalia
Retana, Diana
Baena, Patricia
Fustero-Torre, Coral
Graña-Castro, Osvaldo
Troulé, Kevin
Caleiras, Eduardo
Tezanos, Patricia
Muela, Pablo
Cintado, Elisa
Trejo, José Luis
Sepúlveda, Juan Manuel
González-León, Pedro
Jiménez-Roldán, Luis
Moreno, Luis Miguel
Esteban, Olga
Pérez-Núñez, Ángel
Hernández-Lain, Aurelio
Mazarico Gallego, José
Ferrer, Irene
Suárez, Rocío
Garrido-Martín, Eva M.
Paz-Ares, Luis
Dalmasso, Celine
Cohen-Jonathan Moyal, Elizabeth
Siegfried, Aurore
Hegarty, Aisling
Keelan, Stephen
Varešlija, Damir
Young, Leonie S.
Mohme, Malte
Goy, Yvonne
Wikman, Harriet
Fernández-Alén, Jose
Blasco, Guillermo
Alcázar, Lucía
Cabañuz, Clara
Grivennikov, Sergei I.
Ianus, Andrada
Shemesh, Noam
Faria, Claudia C.
Lee, Rebecca
Lorigan, Paul
Le Rhun, Emilie
Weller, Michael
Soffietti, Riccardo
Bertero, Luca
Ricardi, Umberto
Bosch-Barrera, Joaquim
Sais, Elia
Teixidor, Eduard
Hernández-Martínez, Alejandro
Calvo, Alfonso
Aristu, Javier
Martin, Santiago M.
Gonzalez, Alvaro
Adler, Omer
Erez, Neta
Valiente, Manuel
author_facet Monteiro, Cátia
Miarka, Lauritz
Perea-García, María
Priego, Neibla
García-Gómez, Pedro
Álvaro-Espinosa, Laura
de Pablos-Aragoneses, Ana
Yebra, Natalia
Retana, Diana
Baena, Patricia
Fustero-Torre, Coral
Graña-Castro, Osvaldo
Troulé, Kevin
Caleiras, Eduardo
Tezanos, Patricia
Muela, Pablo
Cintado, Elisa
Trejo, José Luis
Sepúlveda, Juan Manuel
González-León, Pedro
Jiménez-Roldán, Luis
Moreno, Luis Miguel
Esteban, Olga
Pérez-Núñez, Ángel
Hernández-Lain, Aurelio
Mazarico Gallego, José
Ferrer, Irene
Suárez, Rocío
Garrido-Martín, Eva M.
Paz-Ares, Luis
Dalmasso, Celine
Cohen-Jonathan Moyal, Elizabeth
Siegfried, Aurore
Hegarty, Aisling
Keelan, Stephen
Varešlija, Damir
Young, Leonie S.
Mohme, Malte
Goy, Yvonne
Wikman, Harriet
Fernández-Alén, Jose
Blasco, Guillermo
Alcázar, Lucía
Cabañuz, Clara
Grivennikov, Sergei I.
Ianus, Andrada
Shemesh, Noam
Faria, Claudia C.
Lee, Rebecca
Lorigan, Paul
Le Rhun, Emilie
Weller, Michael
Soffietti, Riccardo
Bertero, Luca
Ricardi, Umberto
Bosch-Barrera, Joaquim
Sais, Elia
Teixidor, Eduard
Hernández-Martínez, Alejandro
Calvo, Alfonso
Aristu, Javier
Martin, Santiago M.
Gonzalez, Alvaro
Adler, Omer
Erez, Neta
Valiente, Manuel
author_sort Monteiro, Cátia
collection PubMed
description Whole-brain radiotherapy (WBRT) is the treatment backbone for many patients with brain metastasis; however, its efficacy in preventing disease progression and the associated toxicity have questioned the clinical impact of this approach and emphasized the need for alternative treatments. Given the limited therapeutic options available for these patients and the poor understanding of the molecular mechanisms underlying the resistance of metastatic lesions to WBRT, we sought to uncover actionable targets and biomarkers that could help to refine patient selection. Through an unbiased analysis of experimental in vivo models of brain metastasis resistant to WBRT, we identified activation of the S100A9–RAGE–NF-κB–JunB pathway in brain metastases as a potential mediator of resistance in this organ. Targeting this pathway genetically or pharmacologically was sufficient to revert the WBRT resistance and increase therapeutic benefits in vivo at lower doses of radiation. In patients with primary melanoma, lung or breast adenocarcinoma developing brain metastasis, endogenous S100A9 levels in brain lesions correlated with clinical response to WBRT and underscored the potential of S100A9 levels in the blood as a noninvasive biomarker. Collectively, we provide a molecular framework to personalize WBRT and improve its efficacy through combination with a radiosensitizer that balances therapeutic benefit and toxicity.
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spelling pubmed-90184242022-04-29 Stratification of radiosensitive brain metastases based on an actionable S100A9/RAGE resistance mechanism Monteiro, Cátia Miarka, Lauritz Perea-García, María Priego, Neibla García-Gómez, Pedro Álvaro-Espinosa, Laura de Pablos-Aragoneses, Ana Yebra, Natalia Retana, Diana Baena, Patricia Fustero-Torre, Coral Graña-Castro, Osvaldo Troulé, Kevin Caleiras, Eduardo Tezanos, Patricia Muela, Pablo Cintado, Elisa Trejo, José Luis Sepúlveda, Juan Manuel González-León, Pedro Jiménez-Roldán, Luis Moreno, Luis Miguel Esteban, Olga Pérez-Núñez, Ángel Hernández-Lain, Aurelio Mazarico Gallego, José Ferrer, Irene Suárez, Rocío Garrido-Martín, Eva M. Paz-Ares, Luis Dalmasso, Celine Cohen-Jonathan Moyal, Elizabeth Siegfried, Aurore Hegarty, Aisling Keelan, Stephen Varešlija, Damir Young, Leonie S. Mohme, Malte Goy, Yvonne Wikman, Harriet Fernández-Alén, Jose Blasco, Guillermo Alcázar, Lucía Cabañuz, Clara Grivennikov, Sergei I. Ianus, Andrada Shemesh, Noam Faria, Claudia C. Lee, Rebecca Lorigan, Paul Le Rhun, Emilie Weller, Michael Soffietti, Riccardo Bertero, Luca Ricardi, Umberto Bosch-Barrera, Joaquim Sais, Elia Teixidor, Eduard Hernández-Martínez, Alejandro Calvo, Alfonso Aristu, Javier Martin, Santiago M. Gonzalez, Alvaro Adler, Omer Erez, Neta Valiente, Manuel Nat Med Article Whole-brain radiotherapy (WBRT) is the treatment backbone for many patients with brain metastasis; however, its efficacy in preventing disease progression and the associated toxicity have questioned the clinical impact of this approach and emphasized the need for alternative treatments. Given the limited therapeutic options available for these patients and the poor understanding of the molecular mechanisms underlying the resistance of metastatic lesions to WBRT, we sought to uncover actionable targets and biomarkers that could help to refine patient selection. Through an unbiased analysis of experimental in vivo models of brain metastasis resistant to WBRT, we identified activation of the S100A9–RAGE–NF-κB–JunB pathway in brain metastases as a potential mediator of resistance in this organ. Targeting this pathway genetically or pharmacologically was sufficient to revert the WBRT resistance and increase therapeutic benefits in vivo at lower doses of radiation. In patients with primary melanoma, lung or breast adenocarcinoma developing brain metastasis, endogenous S100A9 levels in brain lesions correlated with clinical response to WBRT and underscored the potential of S100A9 levels in the blood as a noninvasive biomarker. Collectively, we provide a molecular framework to personalize WBRT and improve its efficacy through combination with a radiosensitizer that balances therapeutic benefit and toxicity. Nature Publishing Group US 2022-04-11 2022 /pmc/articles/PMC9018424/ /pubmed/35411077 http://dx.doi.org/10.1038/s41591-022-01749-8 Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Monteiro, Cátia
Miarka, Lauritz
Perea-García, María
Priego, Neibla
García-Gómez, Pedro
Álvaro-Espinosa, Laura
de Pablos-Aragoneses, Ana
Yebra, Natalia
Retana, Diana
Baena, Patricia
Fustero-Torre, Coral
Graña-Castro, Osvaldo
Troulé, Kevin
Caleiras, Eduardo
Tezanos, Patricia
Muela, Pablo
Cintado, Elisa
Trejo, José Luis
Sepúlveda, Juan Manuel
González-León, Pedro
Jiménez-Roldán, Luis
Moreno, Luis Miguel
Esteban, Olga
Pérez-Núñez, Ángel
Hernández-Lain, Aurelio
Mazarico Gallego, José
Ferrer, Irene
Suárez, Rocío
Garrido-Martín, Eva M.
Paz-Ares, Luis
Dalmasso, Celine
Cohen-Jonathan Moyal, Elizabeth
Siegfried, Aurore
Hegarty, Aisling
Keelan, Stephen
Varešlija, Damir
Young, Leonie S.
Mohme, Malte
Goy, Yvonne
Wikman, Harriet
Fernández-Alén, Jose
Blasco, Guillermo
Alcázar, Lucía
Cabañuz, Clara
Grivennikov, Sergei I.
Ianus, Andrada
Shemesh, Noam
Faria, Claudia C.
Lee, Rebecca
Lorigan, Paul
Le Rhun, Emilie
Weller, Michael
Soffietti, Riccardo
Bertero, Luca
Ricardi, Umberto
Bosch-Barrera, Joaquim
Sais, Elia
Teixidor, Eduard
Hernández-Martínez, Alejandro
Calvo, Alfonso
Aristu, Javier
Martin, Santiago M.
Gonzalez, Alvaro
Adler, Omer
Erez, Neta
Valiente, Manuel
Stratification of radiosensitive brain metastases based on an actionable S100A9/RAGE resistance mechanism
title Stratification of radiosensitive brain metastases based on an actionable S100A9/RAGE resistance mechanism
title_full Stratification of radiosensitive brain metastases based on an actionable S100A9/RAGE resistance mechanism
title_fullStr Stratification of radiosensitive brain metastases based on an actionable S100A9/RAGE resistance mechanism
title_full_unstemmed Stratification of radiosensitive brain metastases based on an actionable S100A9/RAGE resistance mechanism
title_short Stratification of radiosensitive brain metastases based on an actionable S100A9/RAGE resistance mechanism
title_sort stratification of radiosensitive brain metastases based on an actionable s100a9/rage resistance mechanism
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9018424/
https://www.ncbi.nlm.nih.gov/pubmed/35411077
http://dx.doi.org/10.1038/s41591-022-01749-8
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