Cargando…

A novel 3D nanofibre scaffold conserves the plasticity of glioblastoma stem cell invasion by regulating galectin-3 and integrin-β1 expression

Glioblastoma Multiforme (GBM) invasiveness renders complete surgical resection impossible and highly invasive Glioblastoma Initiating Cells (GICs) are responsible for tumour recurrence. Their dissemination occurs along pre-existing fibrillary brain structures comprising the aligned myelinated fibres...

Descripción completa

Detalles Bibliográficos
Autores principales: Saleh, Ali, Marhuenda, Emilie, Fabre, Christine, Hassani, Zahra, Weille, Jan de, Boukhaddaoui, Hassan, Guelfi, Sophie, Maldonado, Igor Lima, Hugnot, Jean- Philippe, Duffau, Hugues, Bauchet, Luc, Cornu, David, Bakalara, Norbert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6787018/
https://www.ncbi.nlm.nih.gov/pubmed/31601895
http://dx.doi.org/10.1038/s41598-019-51108-w
_version_ 1783458170640793600
author Saleh, Ali
Marhuenda, Emilie
Fabre, Christine
Hassani, Zahra
Weille, Jan de
Boukhaddaoui, Hassan
Guelfi, Sophie
Maldonado, Igor Lima
Hugnot, Jean- Philippe
Duffau, Hugues
Bauchet, Luc
Cornu, David
Bakalara, Norbert
author_facet Saleh, Ali
Marhuenda, Emilie
Fabre, Christine
Hassani, Zahra
Weille, Jan de
Boukhaddaoui, Hassan
Guelfi, Sophie
Maldonado, Igor Lima
Hugnot, Jean- Philippe
Duffau, Hugues
Bauchet, Luc
Cornu, David
Bakalara, Norbert
author_sort Saleh, Ali
collection PubMed
description Glioblastoma Multiforme (GBM) invasiveness renders complete surgical resection impossible and highly invasive Glioblastoma Initiating Cells (GICs) are responsible for tumour recurrence. Their dissemination occurs along pre-existing fibrillary brain structures comprising the aligned myelinated fibres of the corpus callosum (CC) and the laminin (LN)-rich basal lamina of blood vessels. The extracellular matrix (ECM) of these environments regulates GIC migration, but the underlying mechanisms remain largely unknown. In order to recapitulate the composition and the topographic properties of the cerebral ECM in the migration of GICs, we have set up a new aligned polyacrylonitrile (PAN)-derived nanofiber (NF) scaffold. This system is suitable for drug screening as well as discrimination of the migration potential of different glioblastoma stem cells. Functionalisation with LN increases the spatial anisotropy of migration and modulates its mode from collective to single cell migration. Mechanistically, equally similar to what has been observed for mesenchymal migration of GBM in vivo, is the upregulation of galectin-3 and integrin-β1 in Gli4 cells migrating on our NF scaffold. Downregulation of Calpain-2 in GICs migrating in vivo along the CC and in vitro on LN-coated NF underlines a difference in the turnover of focal adhesion (FA) molecules between single-cell and collective types of migration.
format Online
Article
Text
id pubmed-6787018
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-67870182019-10-17 A novel 3D nanofibre scaffold conserves the plasticity of glioblastoma stem cell invasion by regulating galectin-3 and integrin-β1 expression Saleh, Ali Marhuenda, Emilie Fabre, Christine Hassani, Zahra Weille, Jan de Boukhaddaoui, Hassan Guelfi, Sophie Maldonado, Igor Lima Hugnot, Jean- Philippe Duffau, Hugues Bauchet, Luc Cornu, David Bakalara, Norbert Sci Rep Article Glioblastoma Multiforme (GBM) invasiveness renders complete surgical resection impossible and highly invasive Glioblastoma Initiating Cells (GICs) are responsible for tumour recurrence. Their dissemination occurs along pre-existing fibrillary brain structures comprising the aligned myelinated fibres of the corpus callosum (CC) and the laminin (LN)-rich basal lamina of blood vessels. The extracellular matrix (ECM) of these environments regulates GIC migration, but the underlying mechanisms remain largely unknown. In order to recapitulate the composition and the topographic properties of the cerebral ECM in the migration of GICs, we have set up a new aligned polyacrylonitrile (PAN)-derived nanofiber (NF) scaffold. This system is suitable for drug screening as well as discrimination of the migration potential of different glioblastoma stem cells. Functionalisation with LN increases the spatial anisotropy of migration and modulates its mode from collective to single cell migration. Mechanistically, equally similar to what has been observed for mesenchymal migration of GBM in vivo, is the upregulation of galectin-3 and integrin-β1 in Gli4 cells migrating on our NF scaffold. Downregulation of Calpain-2 in GICs migrating in vivo along the CC and in vitro on LN-coated NF underlines a difference in the turnover of focal adhesion (FA) molecules between single-cell and collective types of migration. Nature Publishing Group UK 2019-10-10 /pmc/articles/PMC6787018/ /pubmed/31601895 http://dx.doi.org/10.1038/s41598-019-51108-w Text en © The Author(s) 2019 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as 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 images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Saleh, Ali
Marhuenda, Emilie
Fabre, Christine
Hassani, Zahra
Weille, Jan de
Boukhaddaoui, Hassan
Guelfi, Sophie
Maldonado, Igor Lima
Hugnot, Jean- Philippe
Duffau, Hugues
Bauchet, Luc
Cornu, David
Bakalara, Norbert
A novel 3D nanofibre scaffold conserves the plasticity of glioblastoma stem cell invasion by regulating galectin-3 and integrin-β1 expression
title A novel 3D nanofibre scaffold conserves the plasticity of glioblastoma stem cell invasion by regulating galectin-3 and integrin-β1 expression
title_full A novel 3D nanofibre scaffold conserves the plasticity of glioblastoma stem cell invasion by regulating galectin-3 and integrin-β1 expression
title_fullStr A novel 3D nanofibre scaffold conserves the plasticity of glioblastoma stem cell invasion by regulating galectin-3 and integrin-β1 expression
title_full_unstemmed A novel 3D nanofibre scaffold conserves the plasticity of glioblastoma stem cell invasion by regulating galectin-3 and integrin-β1 expression
title_short A novel 3D nanofibre scaffold conserves the plasticity of glioblastoma stem cell invasion by regulating galectin-3 and integrin-β1 expression
title_sort novel 3d nanofibre scaffold conserves the plasticity of glioblastoma stem cell invasion by regulating galectin-3 and integrin-β1 expression
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6787018/
https://www.ncbi.nlm.nih.gov/pubmed/31601895
http://dx.doi.org/10.1038/s41598-019-51108-w
work_keys_str_mv AT salehali anovel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT marhuendaemilie anovel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT fabrechristine anovel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT hassanizahra anovel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT weillejande anovel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT boukhaddaouihassan anovel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT guelfisophie anovel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT maldonadoigorlima anovel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT hugnotjeanphilippe anovel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT duffauhugues anovel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT bauchetluc anovel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT cornudavid anovel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT bakalaranorbert anovel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT salehali novel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT marhuendaemilie novel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT fabrechristine novel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT hassanizahra novel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT weillejande novel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT boukhaddaouihassan novel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT guelfisophie novel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT maldonadoigorlima novel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT hugnotjeanphilippe novel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT duffauhugues novel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT bauchetluc novel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT cornudavid novel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression
AT bakalaranorbert novel3dnanofibrescaffoldconservestheplasticityofglioblastomastemcellinvasionbyregulatinggalectin3andintegrinb1expression