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Therapeutic efficacy of (166)Holmium siloxane in microbrachytherapy of induced glioblastoma in minipig tumor model

Glioblastoma is considered the most common malignant primary tumor of central nervous system. In spite of the current standard and multimodal treatment, the prognosis of glioblastoma is poor. For this reason, new therapeutic approaches need to be developed to improve the survival time of the gliobla...

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Autores principales: Khoshnevis, Mehrdad, Brown, Richard, Belluco, Sara, Zahi, Ilyes, Maciocco, Luca, Bonnefont-Rebeix, Catherine, Pillet-Michelland, Elodie, Tranel, Jonathan, Roger, Thierry, Nennig, Christophe, Oudoire, Patrick, Marcon, Lionel, Tillement, Olivier, Louis, Cédric, Gehan, Hélène, Bardiès, Manuel, Mariani, Maurizio, Muzio, Valeria, Meunier, Jean-Philippe, Duchemin, Charlotte, Michel, Nathalie, N’Tsiba, Estelle, Haddad, Ferid, Buronfosse, Thierry, Carozzo, Claude, Ponce, Frédérique
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9677531/
https://www.ncbi.nlm.nih.gov/pubmed/36419904
http://dx.doi.org/10.3389/fonc.2022.923679
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author Khoshnevis, Mehrdad
Brown, Richard
Belluco, Sara
Zahi, Ilyes
Maciocco, Luca
Bonnefont-Rebeix, Catherine
Pillet-Michelland, Elodie
Tranel, Jonathan
Roger, Thierry
Nennig, Christophe
Oudoire, Patrick
Marcon, Lionel
Tillement, Olivier
Louis, Cédric
Gehan, Hélène
Bardiès, Manuel
Mariani, Maurizio
Muzio, Valeria
Meunier, Jean-Philippe
Duchemin, Charlotte
Michel, Nathalie
N’Tsiba, Estelle
Haddad, Ferid
Buronfosse, Thierry
Carozzo, Claude
Ponce, Frédérique
author_facet Khoshnevis, Mehrdad
Brown, Richard
Belluco, Sara
Zahi, Ilyes
Maciocco, Luca
Bonnefont-Rebeix, Catherine
Pillet-Michelland, Elodie
Tranel, Jonathan
Roger, Thierry
Nennig, Christophe
Oudoire, Patrick
Marcon, Lionel
Tillement, Olivier
Louis, Cédric
Gehan, Hélène
Bardiès, Manuel
Mariani, Maurizio
Muzio, Valeria
Meunier, Jean-Philippe
Duchemin, Charlotte
Michel, Nathalie
N’Tsiba, Estelle
Haddad, Ferid
Buronfosse, Thierry
Carozzo, Claude
Ponce, Frédérique
author_sort Khoshnevis, Mehrdad
collection PubMed
description Glioblastoma is considered the most common malignant primary tumor of central nervous system. In spite of the current standard and multimodal treatment, the prognosis of glioblastoma is poor. For this reason, new therapeutic approaches need to be developed to improve the survival time of the glioblastoma patient. In this study, we performed a preclinical experiment to evaluate therapeutic efficacy of (166)Ho microparticle suspension administered by microbrachytherapy on a minipig glioblastoma model. Twelve minipigs were divided in 3 groups. Minipigs had injections into the tumor, containing microparticle suspensions of either (166)Ho (group 1; n = 6) or (165)Ho (group 2; n = 3) and control group (group 3; n = 3). The survival time from treatment to euthanasia was 66 days with a good state of health of all minipigs in group 1. The median survival time from treatment to tumor related death were 8.6 and 7.3 days in groups 2 and control, respectively. Statistically, the prolonged life of group 1 was significantly different from the two other groups (p < 0.01), and no significant difference was observed between group 2 and control (p=0.09). Our trial on the therapeutic effect of the (166)Ho microparticle demonstrated an excellent efficacy in tumor control. The histological and immunohistochemical analysis showed that the efficacy was related to a severe (166)Ho induced necrosis combined with an immune response due to the presence of the radioactive microparticles inside the tumors. The absence of reflux following the injections confirms the safety of the injection device.
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spelling pubmed-96775312022-11-22 Therapeutic efficacy of (166)Holmium siloxane in microbrachytherapy of induced glioblastoma in minipig tumor model Khoshnevis, Mehrdad Brown, Richard Belluco, Sara Zahi, Ilyes Maciocco, Luca Bonnefont-Rebeix, Catherine Pillet-Michelland, Elodie Tranel, Jonathan Roger, Thierry Nennig, Christophe Oudoire, Patrick Marcon, Lionel Tillement, Olivier Louis, Cédric Gehan, Hélène Bardiès, Manuel Mariani, Maurizio Muzio, Valeria Meunier, Jean-Philippe Duchemin, Charlotte Michel, Nathalie N’Tsiba, Estelle Haddad, Ferid Buronfosse, Thierry Carozzo, Claude Ponce, Frédérique Front Oncol Oncology Glioblastoma is considered the most common malignant primary tumor of central nervous system. In spite of the current standard and multimodal treatment, the prognosis of glioblastoma is poor. For this reason, new therapeutic approaches need to be developed to improve the survival time of the glioblastoma patient. In this study, we performed a preclinical experiment to evaluate therapeutic efficacy of (166)Ho microparticle suspension administered by microbrachytherapy on a minipig glioblastoma model. Twelve minipigs were divided in 3 groups. Minipigs had injections into the tumor, containing microparticle suspensions of either (166)Ho (group 1; n = 6) or (165)Ho (group 2; n = 3) and control group (group 3; n = 3). The survival time from treatment to euthanasia was 66 days with a good state of health of all minipigs in group 1. The median survival time from treatment to tumor related death were 8.6 and 7.3 days in groups 2 and control, respectively. Statistically, the prolonged life of group 1 was significantly different from the two other groups (p < 0.01), and no significant difference was observed between group 2 and control (p=0.09). Our trial on the therapeutic effect of the (166)Ho microparticle demonstrated an excellent efficacy in tumor control. The histological and immunohistochemical analysis showed that the efficacy was related to a severe (166)Ho induced necrosis combined with an immune response due to the presence of the radioactive microparticles inside the tumors. The absence of reflux following the injections confirms the safety of the injection device. Frontiers Media S.A. 2022-11-07 /pmc/articles/PMC9677531/ /pubmed/36419904 http://dx.doi.org/10.3389/fonc.2022.923679 Text en Copyright © 2022 Khoshnevis, Brown, Belluco, Zahi, Maciocco, Bonnefont-Rebeix, Pillet-Michelland, Tranel, Roger, Nennig, Oudoire, Marcon, Tillement, Louis, Gehan, Bardiès, Mariani, Muzio, Meunier, Duchemin, Michel, N’Tsiba, Haddad, Buronfosse, Carozzo and Ponce https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Oncology
Khoshnevis, Mehrdad
Brown, Richard
Belluco, Sara
Zahi, Ilyes
Maciocco, Luca
Bonnefont-Rebeix, Catherine
Pillet-Michelland, Elodie
Tranel, Jonathan
Roger, Thierry
Nennig, Christophe
Oudoire, Patrick
Marcon, Lionel
Tillement, Olivier
Louis, Cédric
Gehan, Hélène
Bardiès, Manuel
Mariani, Maurizio
Muzio, Valeria
Meunier, Jean-Philippe
Duchemin, Charlotte
Michel, Nathalie
N’Tsiba, Estelle
Haddad, Ferid
Buronfosse, Thierry
Carozzo, Claude
Ponce, Frédérique
Therapeutic efficacy of (166)Holmium siloxane in microbrachytherapy of induced glioblastoma in minipig tumor model
title Therapeutic efficacy of (166)Holmium siloxane in microbrachytherapy of induced glioblastoma in minipig tumor model
title_full Therapeutic efficacy of (166)Holmium siloxane in microbrachytherapy of induced glioblastoma in minipig tumor model
title_fullStr Therapeutic efficacy of (166)Holmium siloxane in microbrachytherapy of induced glioblastoma in minipig tumor model
title_full_unstemmed Therapeutic efficacy of (166)Holmium siloxane in microbrachytherapy of induced glioblastoma in minipig tumor model
title_short Therapeutic efficacy of (166)Holmium siloxane in microbrachytherapy of induced glioblastoma in minipig tumor model
title_sort therapeutic efficacy of (166)holmium siloxane in microbrachytherapy of induced glioblastoma in minipig tumor model
topic Oncology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9677531/
https://www.ncbi.nlm.nih.gov/pubmed/36419904
http://dx.doi.org/10.3389/fonc.2022.923679
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