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Establishment of a Rodent Glioblastoma Partial Resection Model for Chemotherapy by Local Drug Carriers—Sharing Experience

Local drug delivery systems (LDDS) represent a promising therapy strategy concerning the most common and malignant primary brain tumor glioblastoma (GBM). Nevertheless, to date, only a few systems have been clinically applied, and their success is very limited. Still, numerous new LDDS approaches ar...

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Autores principales: Kubelt, Carolin, Hellmold, Dana, Peschke, Eva, Hauck, Margarethe, Will, Olga, Schütt, Fabian, Lucius, Ralph, Adelung, Rainer, Scherließ, Regina, Hövener, Jan-Bernd, Jansen, Olav, Synowitz, Michael, Held-Feindt, Janka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10295193/
https://www.ncbi.nlm.nih.gov/pubmed/37371613
http://dx.doi.org/10.3390/biomedicines11061518
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author Kubelt, Carolin
Hellmold, Dana
Peschke, Eva
Hauck, Margarethe
Will, Olga
Schütt, Fabian
Lucius, Ralph
Adelung, Rainer
Scherließ, Regina
Hövener, Jan-Bernd
Jansen, Olav
Synowitz, Michael
Held-Feindt, Janka
author_facet Kubelt, Carolin
Hellmold, Dana
Peschke, Eva
Hauck, Margarethe
Will, Olga
Schütt, Fabian
Lucius, Ralph
Adelung, Rainer
Scherließ, Regina
Hövener, Jan-Bernd
Jansen, Olav
Synowitz, Michael
Held-Feindt, Janka
author_sort Kubelt, Carolin
collection PubMed
description Local drug delivery systems (LDDS) represent a promising therapy strategy concerning the most common and malignant primary brain tumor glioblastoma (GBM). Nevertheless, to date, only a few systems have been clinically applied, and their success is very limited. Still, numerous new LDDS approaches are currently being developed. Here, (partial resection) GBM animal models play a key role, as such models are needed to evaluate the therapy prior to any human application. However, such models are complex to establish, and only a few reports detail the process. Here, we report our results of establishing a partial resection glioma model in rats suitable for evaluating LDDS. C6-bearing Wistar rats and U87MG-spheroids- and patient-derived glioma stem-like cells-bearing athymic rats underwent tumor resection followed by the implantation of an exemplary LDDS. Inoculation, tumor growth, residual tumor tissue, and GBM recurrence were reliably imaged using high-resolution Magnetic Resonance Imaging. The release from an exemplary LDDS was verified in vitro and in vivo using Fluorescence Molecular Tomography. The presented GBM partial resection model appears to be well suited to determine the efficiency of LDDS. By sharing our expertise, we intend to provide a powerful tool for the future testing of these very promising systems, paving their way into clinical application.
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spelling pubmed-102951932023-06-28 Establishment of a Rodent Glioblastoma Partial Resection Model for Chemotherapy by Local Drug Carriers—Sharing Experience Kubelt, Carolin Hellmold, Dana Peschke, Eva Hauck, Margarethe Will, Olga Schütt, Fabian Lucius, Ralph Adelung, Rainer Scherließ, Regina Hövener, Jan-Bernd Jansen, Olav Synowitz, Michael Held-Feindt, Janka Biomedicines Article Local drug delivery systems (LDDS) represent a promising therapy strategy concerning the most common and malignant primary brain tumor glioblastoma (GBM). Nevertheless, to date, only a few systems have been clinically applied, and their success is very limited. Still, numerous new LDDS approaches are currently being developed. Here, (partial resection) GBM animal models play a key role, as such models are needed to evaluate the therapy prior to any human application. However, such models are complex to establish, and only a few reports detail the process. Here, we report our results of establishing a partial resection glioma model in rats suitable for evaluating LDDS. C6-bearing Wistar rats and U87MG-spheroids- and patient-derived glioma stem-like cells-bearing athymic rats underwent tumor resection followed by the implantation of an exemplary LDDS. Inoculation, tumor growth, residual tumor tissue, and GBM recurrence were reliably imaged using high-resolution Magnetic Resonance Imaging. The release from an exemplary LDDS was verified in vitro and in vivo using Fluorescence Molecular Tomography. The presented GBM partial resection model appears to be well suited to determine the efficiency of LDDS. By sharing our expertise, we intend to provide a powerful tool for the future testing of these very promising systems, paving their way into clinical application. MDPI 2023-05-24 /pmc/articles/PMC10295193/ /pubmed/37371613 http://dx.doi.org/10.3390/biomedicines11061518 Text en © 2023 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
Kubelt, Carolin
Hellmold, Dana
Peschke, Eva
Hauck, Margarethe
Will, Olga
Schütt, Fabian
Lucius, Ralph
Adelung, Rainer
Scherließ, Regina
Hövener, Jan-Bernd
Jansen, Olav
Synowitz, Michael
Held-Feindt, Janka
Establishment of a Rodent Glioblastoma Partial Resection Model for Chemotherapy by Local Drug Carriers—Sharing Experience
title Establishment of a Rodent Glioblastoma Partial Resection Model for Chemotherapy by Local Drug Carriers—Sharing Experience
title_full Establishment of a Rodent Glioblastoma Partial Resection Model for Chemotherapy by Local Drug Carriers—Sharing Experience
title_fullStr Establishment of a Rodent Glioblastoma Partial Resection Model for Chemotherapy by Local Drug Carriers—Sharing Experience
title_full_unstemmed Establishment of a Rodent Glioblastoma Partial Resection Model for Chemotherapy by Local Drug Carriers—Sharing Experience
title_short Establishment of a Rodent Glioblastoma Partial Resection Model for Chemotherapy by Local Drug Carriers—Sharing Experience
title_sort establishment of a rodent glioblastoma partial resection model for chemotherapy by local drug carriers—sharing experience
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10295193/
https://www.ncbi.nlm.nih.gov/pubmed/37371613
http://dx.doi.org/10.3390/biomedicines11061518
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