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The kinase inhibitor SI113 induces autophagy and synergizes with quinacrine in hindering the growth of human glioblastoma multiforme cells
BACKGROUND: Glioblastoma multiforme (GBM), due to its location, aggressiveness, heterogeneity and infiltrative growth, is characterized by an exceptionally dismal clinical outcome. The small molecule SI113, recently identified as a SGK1 inhibitor, has proven to be effective in restraining GBM growth...
Autores principales: | , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
BioMed Central
2019
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6525441/ https://www.ncbi.nlm.nih.gov/pubmed/31101126 http://dx.doi.org/10.1186/s13046-019-1212-1 |
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author | Matteoni, Silvia Abbruzzese, Claudia Matarrese, Paola De Luca, Gabriele Mileo, Anna M. Miccadei, Stefania Schenone, Silvia Musumeci, Francesca Haas, Tobias L. Sette, Giovanni Carapella, Carmine M. Amato, Rosario Perrotti, Nicola Signore, Michele Paggi, Marco G. |
author_facet | Matteoni, Silvia Abbruzzese, Claudia Matarrese, Paola De Luca, Gabriele Mileo, Anna M. Miccadei, Stefania Schenone, Silvia Musumeci, Francesca Haas, Tobias L. Sette, Giovanni Carapella, Carmine M. Amato, Rosario Perrotti, Nicola Signore, Michele Paggi, Marco G. |
author_sort | Matteoni, Silvia |
collection | PubMed |
description | BACKGROUND: Glioblastoma multiforme (GBM), due to its location, aggressiveness, heterogeneity and infiltrative growth, is characterized by an exceptionally dismal clinical outcome. The small molecule SI113, recently identified as a SGK1 inhibitor, has proven to be effective in restraining GBM growth in vitro and in vivo, showing also encouraging results when employed in combination with other antineoplastic drugs or radiotherapy. Our aim was to explore the pharmacological features of SI113 in GBM cells in order to elucidate the pivotal molecular pathways affected by the drug. Such knowledge would be of invaluable help in conceiving a rational offensive toward GBM. METHODS: We employed GBM cell lines, either established or primary (neurospheres), and used a Reverse-Phase Protein Arrays (RPPA) platform to assess the effect of SI113 upon 114 protein factors whose post-translational modifications are associated with activation or repression of specific signal transduction cascades. RESULTS: SI113 strongly affected the PI3K/mTOR pathway, evoking a pro-survival autophagic response in neurospheres. These results suggested the use of SI113 coupled, for maximum efficiency, with autophagy inhibitors. Indeed, the association of SI113 with an autophagy inhibitor, the antimalarial drug quinacrine, induced a strong synergistic effect in inhibiting GBM growth properties in all the cells tested, including neurospheres. CONCLUSIONS: RPPA clearly identified the molecular pathways influenced by SI113 in GBM cells, highlighting their vulnerability when the drug was administered in association with autophagy inhibitors, providing a strong molecular rationale for testing SI113 in clinical trials in associative GBM therapy. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s13046-019-1212-1) contains supplementary material, which is available to authorized users. |
format | Online Article Text |
id | pubmed-6525441 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | BioMed Central |
record_format | MEDLINE/PubMed |
spelling | pubmed-65254412019-05-24 The kinase inhibitor SI113 induces autophagy and synergizes with quinacrine in hindering the growth of human glioblastoma multiforme cells Matteoni, Silvia Abbruzzese, Claudia Matarrese, Paola De Luca, Gabriele Mileo, Anna M. Miccadei, Stefania Schenone, Silvia Musumeci, Francesca Haas, Tobias L. Sette, Giovanni Carapella, Carmine M. Amato, Rosario Perrotti, Nicola Signore, Michele Paggi, Marco G. J Exp Clin Cancer Res Research BACKGROUND: Glioblastoma multiforme (GBM), due to its location, aggressiveness, heterogeneity and infiltrative growth, is characterized by an exceptionally dismal clinical outcome. The small molecule SI113, recently identified as a SGK1 inhibitor, has proven to be effective in restraining GBM growth in vitro and in vivo, showing also encouraging results when employed in combination with other antineoplastic drugs or radiotherapy. Our aim was to explore the pharmacological features of SI113 in GBM cells in order to elucidate the pivotal molecular pathways affected by the drug. Such knowledge would be of invaluable help in conceiving a rational offensive toward GBM. METHODS: We employed GBM cell lines, either established or primary (neurospheres), and used a Reverse-Phase Protein Arrays (RPPA) platform to assess the effect of SI113 upon 114 protein factors whose post-translational modifications are associated with activation or repression of specific signal transduction cascades. RESULTS: SI113 strongly affected the PI3K/mTOR pathway, evoking a pro-survival autophagic response in neurospheres. These results suggested the use of SI113 coupled, for maximum efficiency, with autophagy inhibitors. Indeed, the association of SI113 with an autophagy inhibitor, the antimalarial drug quinacrine, induced a strong synergistic effect in inhibiting GBM growth properties in all the cells tested, including neurospheres. CONCLUSIONS: RPPA clearly identified the molecular pathways influenced by SI113 in GBM cells, highlighting their vulnerability when the drug was administered in association with autophagy inhibitors, providing a strong molecular rationale for testing SI113 in clinical trials in associative GBM therapy. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s13046-019-1212-1) contains supplementary material, which is available to authorized users. BioMed Central 2019-05-17 /pmc/articles/PMC6525441/ /pubmed/31101126 http://dx.doi.org/10.1186/s13046-019-1212-1 Text en © The Author(s). 2019 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated. |
spellingShingle | Research Matteoni, Silvia Abbruzzese, Claudia Matarrese, Paola De Luca, Gabriele Mileo, Anna M. Miccadei, Stefania Schenone, Silvia Musumeci, Francesca Haas, Tobias L. Sette, Giovanni Carapella, Carmine M. Amato, Rosario Perrotti, Nicola Signore, Michele Paggi, Marco G. The kinase inhibitor SI113 induces autophagy and synergizes with quinacrine in hindering the growth of human glioblastoma multiforme cells |
title | The kinase inhibitor SI113 induces autophagy and synergizes with quinacrine in hindering the growth of human glioblastoma multiforme cells |
title_full | The kinase inhibitor SI113 induces autophagy and synergizes with quinacrine in hindering the growth of human glioblastoma multiforme cells |
title_fullStr | The kinase inhibitor SI113 induces autophagy and synergizes with quinacrine in hindering the growth of human glioblastoma multiforme cells |
title_full_unstemmed | The kinase inhibitor SI113 induces autophagy and synergizes with quinacrine in hindering the growth of human glioblastoma multiforme cells |
title_short | The kinase inhibitor SI113 induces autophagy and synergizes with quinacrine in hindering the growth of human glioblastoma multiforme cells |
title_sort | kinase inhibitor si113 induces autophagy and synergizes with quinacrine in hindering the growth of human glioblastoma multiforme cells |
topic | Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6525441/ https://www.ncbi.nlm.nih.gov/pubmed/31101126 http://dx.doi.org/10.1186/s13046-019-1212-1 |
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