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BSBM-07 HIGH-DIMENSIONAL HISTOPATHOLOGIC EVALUATION OF THE HYPOXIC MICROENVIRONMENT IN GLIOBLASTOMA

Rapidly growing solid tumors such as glioblastoma (GBM) are characteristically hypoxic, displaying large areas of necrosis surrounded by hyperproliferative pseudopalisading cells. Intra-tumoral hypoxia develops over time in the three-dimensional space and the degree of tissue oxygenation is a dynami...

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Autores principales: Mansouri, Sheila, Zaidi, Mark, Singh, Olivia, Karimi, Shirin, Lombard, Phoebe, Dvorkin-Gheva, Anna, Velasquez, Carlos, Ali, Hafsah, Devaraja, Kaviya, Sosa, Julio, Patil, Vikas, Wei, QingXia, Wu, Ronald, Li, Mira, Cheung, May, Voisin, Mathew, Gao, Andrew, Hedley, David, Aldape, Kenneth, Wouters, Bradley, Zadeh, Gelareh, Gandhi, Shreya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10402297/
http://dx.doi.org/10.1093/noajnl/vdad070.004
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author Mansouri, Sheila
Zaidi, Mark
Singh, Olivia
Karimi, Shirin
Lombard, Phoebe
Dvorkin-Gheva, Anna
Velasquez, Carlos
Ali, Hafsah
Devaraja, Kaviya
Sosa, Julio
Patil, Vikas
Wei, QingXia
Wu, Ronald
Li, Mira
Cheung, May
Voisin, Mathew
Gao, Andrew
Hedley, David
Aldape, Kenneth
Wouters, Bradley
Zadeh, Gelareh
Gandhi, Shreya
author_facet Mansouri, Sheila
Zaidi, Mark
Singh, Olivia
Karimi, Shirin
Lombard, Phoebe
Dvorkin-Gheva, Anna
Velasquez, Carlos
Ali, Hafsah
Devaraja, Kaviya
Sosa, Julio
Patil, Vikas
Wei, QingXia
Wu, Ronald
Li, Mira
Cheung, May
Voisin, Mathew
Gao, Andrew
Hedley, David
Aldape, Kenneth
Wouters, Bradley
Zadeh, Gelareh
Gandhi, Shreya
author_sort Mansouri, Sheila
collection PubMed
description Rapidly growing solid tumors such as glioblastoma (GBM) are characteristically hypoxic, displaying large areas of necrosis surrounded by hyperproliferative pseudopalisading cells. Intra-tumoral hypoxia develops over time in the three-dimensional space and the degree of tissue oxygenation is a dynamic process that varies continuously. Combined with the extensive inter- and intra-tumoral heterogeneity associated with GBM at the bulk and single cell level, hypoxia contributes to a gradient of molecular alterations that are specific to the different cell populations that make up the bulk of the tumor and reside in specific niches. To date, high dimensional histopathologic analyses of the hypoxic regions within GBM tissue have not been performed. Here, we took a combined spatial and single-cell proteomic profiling approach to investigate the histopathologic features of hypoxia by leveraging a unique clinical study where the exogenous hypoxia marker pimonidazole (PIMO) is administered to patients with GBM prior to surgery. Tissue specimens were subjected to imaging mass cytometry and serial immunohistochemistry using a panel of 27 markers associated with cellular hallmarks of hypoxia, metabolism, proliferation, stemness, angiogenesis, and immune cell types. We took high-resolution imaging and statistical approaches to explore the interplay of the different markers within hypoxic regions of primary and recurrent GBMs, in addition to IDH-mutant gliomas. Our findings elucidate the expression pattern of key biological markers relative to one another, altered composition of different cell types, along with differential proliferative, transcriptional, and translational activation states associated with each cell type within the hypoxic regions of GBM.
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spelling pubmed-104022972023-08-05 BSBM-07 HIGH-DIMENSIONAL HISTOPATHOLOGIC EVALUATION OF THE HYPOXIC MICROENVIRONMENT IN GLIOBLASTOMA Mansouri, Sheila Zaidi, Mark Singh, Olivia Karimi, Shirin Lombard, Phoebe Dvorkin-Gheva, Anna Velasquez, Carlos Ali, Hafsah Devaraja, Kaviya Sosa, Julio Patil, Vikas Wei, QingXia Wu, Ronald Li, Mira Cheung, May Voisin, Mathew Gao, Andrew Hedley, David Aldape, Kenneth Wouters, Bradley Zadeh, Gelareh Gandhi, Shreya Neurooncol Adv Final Category: Basic Science of Brain Metastases Rapidly growing solid tumors such as glioblastoma (GBM) are characteristically hypoxic, displaying large areas of necrosis surrounded by hyperproliferative pseudopalisading cells. Intra-tumoral hypoxia develops over time in the three-dimensional space and the degree of tissue oxygenation is a dynamic process that varies continuously. Combined with the extensive inter- and intra-tumoral heterogeneity associated with GBM at the bulk and single cell level, hypoxia contributes to a gradient of molecular alterations that are specific to the different cell populations that make up the bulk of the tumor and reside in specific niches. To date, high dimensional histopathologic analyses of the hypoxic regions within GBM tissue have not been performed. Here, we took a combined spatial and single-cell proteomic profiling approach to investigate the histopathologic features of hypoxia by leveraging a unique clinical study where the exogenous hypoxia marker pimonidazole (PIMO) is administered to patients with GBM prior to surgery. Tissue specimens were subjected to imaging mass cytometry and serial immunohistochemistry using a panel of 27 markers associated with cellular hallmarks of hypoxia, metabolism, proliferation, stemness, angiogenesis, and immune cell types. We took high-resolution imaging and statistical approaches to explore the interplay of the different markers within hypoxic regions of primary and recurrent GBMs, in addition to IDH-mutant gliomas. Our findings elucidate the expression pattern of key biological markers relative to one another, altered composition of different cell types, along with differential proliferative, transcriptional, and translational activation states associated with each cell type within the hypoxic regions of GBM. Oxford University Press 2023-08-04 /pmc/articles/PMC10402297/ http://dx.doi.org/10.1093/noajnl/vdad070.004 Text en © The Author(s) 2023. Published by Oxford University Press, the Society for Neuro-Oncology and the European Association of Neuro-Oncology. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Final Category: Basic Science of Brain Metastases
Mansouri, Sheila
Zaidi, Mark
Singh, Olivia
Karimi, Shirin
Lombard, Phoebe
Dvorkin-Gheva, Anna
Velasquez, Carlos
Ali, Hafsah
Devaraja, Kaviya
Sosa, Julio
Patil, Vikas
Wei, QingXia
Wu, Ronald
Li, Mira
Cheung, May
Voisin, Mathew
Gao, Andrew
Hedley, David
Aldape, Kenneth
Wouters, Bradley
Zadeh, Gelareh
Gandhi, Shreya
BSBM-07 HIGH-DIMENSIONAL HISTOPATHOLOGIC EVALUATION OF THE HYPOXIC MICROENVIRONMENT IN GLIOBLASTOMA
title BSBM-07 HIGH-DIMENSIONAL HISTOPATHOLOGIC EVALUATION OF THE HYPOXIC MICROENVIRONMENT IN GLIOBLASTOMA
title_full BSBM-07 HIGH-DIMENSIONAL HISTOPATHOLOGIC EVALUATION OF THE HYPOXIC MICROENVIRONMENT IN GLIOBLASTOMA
title_fullStr BSBM-07 HIGH-DIMENSIONAL HISTOPATHOLOGIC EVALUATION OF THE HYPOXIC MICROENVIRONMENT IN GLIOBLASTOMA
title_full_unstemmed BSBM-07 HIGH-DIMENSIONAL HISTOPATHOLOGIC EVALUATION OF THE HYPOXIC MICROENVIRONMENT IN GLIOBLASTOMA
title_short BSBM-07 HIGH-DIMENSIONAL HISTOPATHOLOGIC EVALUATION OF THE HYPOXIC MICROENVIRONMENT IN GLIOBLASTOMA
title_sort bsbm-07 high-dimensional histopathologic evaluation of the hypoxic microenvironment in glioblastoma
topic Final Category: Basic Science of Brain Metastases
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10402297/
http://dx.doi.org/10.1093/noajnl/vdad070.004
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