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Studies on Biological and Molecular Effects of Small-Molecule Kinase Inhibitors on Human Glioblastoma Cells and Organotypic Brain Slices

Glioblastoma is the most common and aggressive primary brain tumor. Multiple genetic and epigenetic alterations in several major signaling pathways—including the phosphoinositide 3-kinases (PI3K)/AKT/mTOR and the Raf/MEK/ERK pathway—could be found. We therefore aimed to investigate the biological an...

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Autores principales: Hörnschemeyer, Julia, Kirschstein, Timo, Reichart, Gesine, Sasse, Christin, Venus, Jakob, Einsle, Anne, Porath, Katrin, Linnebacher, Michael, Köhling, Rüdiger, Lange, Falko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9409734/
https://www.ncbi.nlm.nih.gov/pubmed/36013437
http://dx.doi.org/10.3390/life12081258
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author Hörnschemeyer, Julia
Kirschstein, Timo
Reichart, Gesine
Sasse, Christin
Venus, Jakob
Einsle, Anne
Porath, Katrin
Linnebacher, Michael
Köhling, Rüdiger
Lange, Falko
author_facet Hörnschemeyer, Julia
Kirschstein, Timo
Reichart, Gesine
Sasse, Christin
Venus, Jakob
Einsle, Anne
Porath, Katrin
Linnebacher, Michael
Köhling, Rüdiger
Lange, Falko
author_sort Hörnschemeyer, Julia
collection PubMed
description Glioblastoma is the most common and aggressive primary brain tumor. Multiple genetic and epigenetic alterations in several major signaling pathways—including the phosphoinositide 3-kinases (PI3K)/AKT/mTOR and the Raf/MEK/ERK pathway—could be found. We therefore aimed to investigate the biological and molecular effects of small-molecule kinase inhibitors that may interfere with those pathways. For this purpose, patient-derived glioblastoma cells were challenged with dactolisib, ipatasertib, MK-2206, regorafenib, or trametinib. To determine the effects of the small-molecule kinase inhibitors, assays of cell proliferation and apoptosis and immunoblot analyses were performed. To further investigate the effects of ipatasertib on organotypic brain slices harboring glioblastoma cells, the tumor growth was estimated. In addition, the network activity in brain slices was assessed by electrophysiological field potential recordings. Multi-kinase inhibitor regorafenib and both MK-2206 and dactolisib were very effective in all preclinical tumor models, while with respect to trametinib, two cell lines were found to be highly resistant. Only in HROG05 cells, ipatasertib showed anti-tumoral effects in vitro and in organotypic brain slices. Additionally, ipatasertib diminished synchronous network activity in organotypic brain slices. Overall, our data suggest that ipatasertib was only effective in selected tumor models, while especially regorafenib and MK-2206 presented a uniform response pattern.
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spelling pubmed-94097342022-08-26 Studies on Biological and Molecular Effects of Small-Molecule Kinase Inhibitors on Human Glioblastoma Cells and Organotypic Brain Slices Hörnschemeyer, Julia Kirschstein, Timo Reichart, Gesine Sasse, Christin Venus, Jakob Einsle, Anne Porath, Katrin Linnebacher, Michael Köhling, Rüdiger Lange, Falko Life (Basel) Article Glioblastoma is the most common and aggressive primary brain tumor. Multiple genetic and epigenetic alterations in several major signaling pathways—including the phosphoinositide 3-kinases (PI3K)/AKT/mTOR and the Raf/MEK/ERK pathway—could be found. We therefore aimed to investigate the biological and molecular effects of small-molecule kinase inhibitors that may interfere with those pathways. For this purpose, patient-derived glioblastoma cells were challenged with dactolisib, ipatasertib, MK-2206, regorafenib, or trametinib. To determine the effects of the small-molecule kinase inhibitors, assays of cell proliferation and apoptosis and immunoblot analyses were performed. To further investigate the effects of ipatasertib on organotypic brain slices harboring glioblastoma cells, the tumor growth was estimated. In addition, the network activity in brain slices was assessed by electrophysiological field potential recordings. Multi-kinase inhibitor regorafenib and both MK-2206 and dactolisib were very effective in all preclinical tumor models, while with respect to trametinib, two cell lines were found to be highly resistant. Only in HROG05 cells, ipatasertib showed anti-tumoral effects in vitro and in organotypic brain slices. Additionally, ipatasertib diminished synchronous network activity in organotypic brain slices. Overall, our data suggest that ipatasertib was only effective in selected tumor models, while especially regorafenib and MK-2206 presented a uniform response pattern. MDPI 2022-08-17 /pmc/articles/PMC9409734/ /pubmed/36013437 http://dx.doi.org/10.3390/life12081258 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hörnschemeyer, Julia
Kirschstein, Timo
Reichart, Gesine
Sasse, Christin
Venus, Jakob
Einsle, Anne
Porath, Katrin
Linnebacher, Michael
Köhling, Rüdiger
Lange, Falko
Studies on Biological and Molecular Effects of Small-Molecule Kinase Inhibitors on Human Glioblastoma Cells and Organotypic Brain Slices
title Studies on Biological and Molecular Effects of Small-Molecule Kinase Inhibitors on Human Glioblastoma Cells and Organotypic Brain Slices
title_full Studies on Biological and Molecular Effects of Small-Molecule Kinase Inhibitors on Human Glioblastoma Cells and Organotypic Brain Slices
title_fullStr Studies on Biological and Molecular Effects of Small-Molecule Kinase Inhibitors on Human Glioblastoma Cells and Organotypic Brain Slices
title_full_unstemmed Studies on Biological and Molecular Effects of Small-Molecule Kinase Inhibitors on Human Glioblastoma Cells and Organotypic Brain Slices
title_short Studies on Biological and Molecular Effects of Small-Molecule Kinase Inhibitors on Human Glioblastoma Cells and Organotypic Brain Slices
title_sort studies on biological and molecular effects of small-molecule kinase inhibitors on human glioblastoma cells and organotypic brain slices
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9409734/
https://www.ncbi.nlm.nih.gov/pubmed/36013437
http://dx.doi.org/10.3390/life12081258
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