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Tumor Infiltration in Enhancing and Non-Enhancing Parts of Glioblastoma: A Correlation with Histopathology

PURPOSE: To correlate histopathologic findings from biopsy specimens with their corresponding location within enhancing areas, non-enhancing areas and necrotic areas on contrast enhanced T1-weighted MRI scans (cT1). MATERIALS AND METHODS: In 37 patients with newly diagnosed glioblastoma who underwen...

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Autores principales: Eidel, Oliver, Burth, Sina, Neumann, Jan-Oliver, Kieslich, Pascal J., Sahm, Felix, Jungk, Christine, Kickingereder, Philipp, Bickelhaupt, Sebastian, Mundiyanapurath, Sibu, Bäumer, Philipp, Wick, Wolfgang, Schlemmer, Heinz-Peter, Kiening, Karl, Unterberg, Andreas, Bendszus, Martin, Radbruch, Alexander
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5245878/
https://www.ncbi.nlm.nih.gov/pubmed/28103256
http://dx.doi.org/10.1371/journal.pone.0169292
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author Eidel, Oliver
Burth, Sina
Neumann, Jan-Oliver
Kieslich, Pascal J.
Sahm, Felix
Jungk, Christine
Kickingereder, Philipp
Bickelhaupt, Sebastian
Mundiyanapurath, Sibu
Bäumer, Philipp
Wick, Wolfgang
Schlemmer, Heinz-Peter
Kiening, Karl
Unterberg, Andreas
Bendszus, Martin
Radbruch, Alexander
author_facet Eidel, Oliver
Burth, Sina
Neumann, Jan-Oliver
Kieslich, Pascal J.
Sahm, Felix
Jungk, Christine
Kickingereder, Philipp
Bickelhaupt, Sebastian
Mundiyanapurath, Sibu
Bäumer, Philipp
Wick, Wolfgang
Schlemmer, Heinz-Peter
Kiening, Karl
Unterberg, Andreas
Bendszus, Martin
Radbruch, Alexander
author_sort Eidel, Oliver
collection PubMed
description PURPOSE: To correlate histopathologic findings from biopsy specimens with their corresponding location within enhancing areas, non-enhancing areas and necrotic areas on contrast enhanced T1-weighted MRI scans (cT1). MATERIALS AND METHODS: In 37 patients with newly diagnosed glioblastoma who underwent stereotactic biopsy, we obtained a correlation of 561 1mm(3) biopsy specimens with their corresponding position on the intraoperative cT1 image at 1.5 Tesla. Biopsy points were categorized as enhancing (CE), non-enhancing (NE) or necrotic (NEC) on cT1 and tissue samples were categorized as “viable tumor cells”, “blood” or “necrotic tissue (with or without cellular component)”. Cell counting was done semi-automatically. RESULTS: NE had the highest content of tissue categorized as viable tumor cells (89% vs. 60% in CE and 30% NEC, respectively). Besides, the average cell density for NE (3764 ± 2893 cells/mm(2)) was comparable to CE (3506 ± 3116 cells/mm(2)), while NEC had a lower cell density with 2713 ± 3239 cells/mm(2). If necrotic parts and bleeds were excluded, cell density in biopsies categorized as “viable tumor tissue” decreased from the center of the tumor (NEC, 5804 ± 3480 cells/mm(2)) to CE (4495 ± 3209 cells/mm(2)) and NE (4130 ± 2817 cells/mm(2)). DISCUSSION: The appearance of a glioblastoma on a cT1 image (circular enhancement, central necrosis, peritumoral edema) does not correspond to its diffuse histopathological composition. Cell density is elevated in both CE and NE parts. Hence, our study suggests that NE contains considerable amounts of infiltrative tumor with a high cellularity which might be considered in resection planning.
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spelling pubmed-52458782017-02-06 Tumor Infiltration in Enhancing and Non-Enhancing Parts of Glioblastoma: A Correlation with Histopathology Eidel, Oliver Burth, Sina Neumann, Jan-Oliver Kieslich, Pascal J. Sahm, Felix Jungk, Christine Kickingereder, Philipp Bickelhaupt, Sebastian Mundiyanapurath, Sibu Bäumer, Philipp Wick, Wolfgang Schlemmer, Heinz-Peter Kiening, Karl Unterberg, Andreas Bendszus, Martin Radbruch, Alexander PLoS One Research Article PURPOSE: To correlate histopathologic findings from biopsy specimens with their corresponding location within enhancing areas, non-enhancing areas and necrotic areas on contrast enhanced T1-weighted MRI scans (cT1). MATERIALS AND METHODS: In 37 patients with newly diagnosed glioblastoma who underwent stereotactic biopsy, we obtained a correlation of 561 1mm(3) biopsy specimens with their corresponding position on the intraoperative cT1 image at 1.5 Tesla. Biopsy points were categorized as enhancing (CE), non-enhancing (NE) or necrotic (NEC) on cT1 and tissue samples were categorized as “viable tumor cells”, “blood” or “necrotic tissue (with or without cellular component)”. Cell counting was done semi-automatically. RESULTS: NE had the highest content of tissue categorized as viable tumor cells (89% vs. 60% in CE and 30% NEC, respectively). Besides, the average cell density for NE (3764 ± 2893 cells/mm(2)) was comparable to CE (3506 ± 3116 cells/mm(2)), while NEC had a lower cell density with 2713 ± 3239 cells/mm(2). If necrotic parts and bleeds were excluded, cell density in biopsies categorized as “viable tumor tissue” decreased from the center of the tumor (NEC, 5804 ± 3480 cells/mm(2)) to CE (4495 ± 3209 cells/mm(2)) and NE (4130 ± 2817 cells/mm(2)). DISCUSSION: The appearance of a glioblastoma on a cT1 image (circular enhancement, central necrosis, peritumoral edema) does not correspond to its diffuse histopathological composition. Cell density is elevated in both CE and NE parts. Hence, our study suggests that NE contains considerable amounts of infiltrative tumor with a high cellularity which might be considered in resection planning. Public Library of Science 2017-01-19 /pmc/articles/PMC5245878/ /pubmed/28103256 http://dx.doi.org/10.1371/journal.pone.0169292 Text en © 2017 Eidel et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Eidel, Oliver
Burth, Sina
Neumann, Jan-Oliver
Kieslich, Pascal J.
Sahm, Felix
Jungk, Christine
Kickingereder, Philipp
Bickelhaupt, Sebastian
Mundiyanapurath, Sibu
Bäumer, Philipp
Wick, Wolfgang
Schlemmer, Heinz-Peter
Kiening, Karl
Unterberg, Andreas
Bendszus, Martin
Radbruch, Alexander
Tumor Infiltration in Enhancing and Non-Enhancing Parts of Glioblastoma: A Correlation with Histopathology
title Tumor Infiltration in Enhancing and Non-Enhancing Parts of Glioblastoma: A Correlation with Histopathology
title_full Tumor Infiltration in Enhancing and Non-Enhancing Parts of Glioblastoma: A Correlation with Histopathology
title_fullStr Tumor Infiltration in Enhancing and Non-Enhancing Parts of Glioblastoma: A Correlation with Histopathology
title_full_unstemmed Tumor Infiltration in Enhancing and Non-Enhancing Parts of Glioblastoma: A Correlation with Histopathology
title_short Tumor Infiltration in Enhancing and Non-Enhancing Parts of Glioblastoma: A Correlation with Histopathology
title_sort tumor infiltration in enhancing and non-enhancing parts of glioblastoma: a correlation with histopathology
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5245878/
https://www.ncbi.nlm.nih.gov/pubmed/28103256
http://dx.doi.org/10.1371/journal.pone.0169292
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