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Autophagy inhibition reinforces stemness together with exit from dormancy of polydisperse glioblastoma stem cells

Therapeutic resistance and infiltrative capacities justify the aggressiveness of glioblastoma. This is due to cellular heterogeneity, especially the presence of stemness-related cells, i.e. Cancer Stem Cells (CSC). Previous studies focused on autophagy and its role in CSCs maintenance; these studies...

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Autores principales: Brunel, Aude, Hombourger, Sophie, Barthout, Elodie, Battu, Serge, Kögel, Donat, Antonietti, Patrick, Deluche, Elise, Saada, Sofiane, Durand, Stéphanie, Lalloué, Fabrice, Jauberteau, Marie-Odile, Begaud, Gaëlle, Bessette, Barbara, Verdier, Mireille
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8351723/
https://www.ncbi.nlm.nih.gov/pubmed/34314381
http://dx.doi.org/10.18632/aging.203362
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author Brunel, Aude
Hombourger, Sophie
Barthout, Elodie
Battu, Serge
Kögel, Donat
Antonietti, Patrick
Deluche, Elise
Saada, Sofiane
Durand, Stéphanie
Lalloué, Fabrice
Jauberteau, Marie-Odile
Begaud, Gaëlle
Bessette, Barbara
Verdier, Mireille
author_facet Brunel, Aude
Hombourger, Sophie
Barthout, Elodie
Battu, Serge
Kögel, Donat
Antonietti, Patrick
Deluche, Elise
Saada, Sofiane
Durand, Stéphanie
Lalloué, Fabrice
Jauberteau, Marie-Odile
Begaud, Gaëlle
Bessette, Barbara
Verdier, Mireille
author_sort Brunel, Aude
collection PubMed
description Therapeutic resistance and infiltrative capacities justify the aggressiveness of glioblastoma. This is due to cellular heterogeneity, especially the presence of stemness-related cells, i.e. Cancer Stem Cells (CSC). Previous studies focused on autophagy and its role in CSCs maintenance; these studies gave conflicting results as they reported either sustaining or disruptive effects. In the present work, we silenced two autophagy related genes -either Beclin1 or ATG5- by shRNA and we explored the ensuing consequences on CSCs markers’ expression and functionalities. Our results showed that the down regulation of autophagy led to enhancement in expression of CSCs markers, while proliferation and clonogenicity were boosted. Temozolomide (TMZ) treatment failed to induce apoptotic death in shBeclin1-transfected cells, contrary to control. We optimized the cellular subset analysis with the use of Sedimentation Field Flow Fractionation, a biological event monitoring- and cell sorting-dedicated technique. Fractograms of both shBeclin1 and shATG5 cells exhibited a shift of elution peak as compared with control cells, showing cellular dispersion and intrinsic sub-fraction modifications. The classical stemness fraction (i.e. F3) highlighted data obtained with the overall cellular population, exhibiting enhancement of stemness markers and escape from dormancy. Our results contributed to illustrate CSCs polydispersity and to show how these cells develop capacity to bypass autophagy inhibition, thanks to their acute adaptability and plasticity.
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spelling pubmed-83517232021-08-10 Autophagy inhibition reinforces stemness together with exit from dormancy of polydisperse glioblastoma stem cells Brunel, Aude Hombourger, Sophie Barthout, Elodie Battu, Serge Kögel, Donat Antonietti, Patrick Deluche, Elise Saada, Sofiane Durand, Stéphanie Lalloué, Fabrice Jauberteau, Marie-Odile Begaud, Gaëlle Bessette, Barbara Verdier, Mireille Aging (Albany NY) Research Paper Therapeutic resistance and infiltrative capacities justify the aggressiveness of glioblastoma. This is due to cellular heterogeneity, especially the presence of stemness-related cells, i.e. Cancer Stem Cells (CSC). Previous studies focused on autophagy and its role in CSCs maintenance; these studies gave conflicting results as they reported either sustaining or disruptive effects. In the present work, we silenced two autophagy related genes -either Beclin1 or ATG5- by shRNA and we explored the ensuing consequences on CSCs markers’ expression and functionalities. Our results showed that the down regulation of autophagy led to enhancement in expression of CSCs markers, while proliferation and clonogenicity were boosted. Temozolomide (TMZ) treatment failed to induce apoptotic death in shBeclin1-transfected cells, contrary to control. We optimized the cellular subset analysis with the use of Sedimentation Field Flow Fractionation, a biological event monitoring- and cell sorting-dedicated technique. Fractograms of both shBeclin1 and shATG5 cells exhibited a shift of elution peak as compared with control cells, showing cellular dispersion and intrinsic sub-fraction modifications. The classical stemness fraction (i.e. F3) highlighted data obtained with the overall cellular population, exhibiting enhancement of stemness markers and escape from dormancy. Our results contributed to illustrate CSCs polydispersity and to show how these cells develop capacity to bypass autophagy inhibition, thanks to their acute adaptability and plasticity. Impact Journals 2021-07-27 /pmc/articles/PMC8351723/ /pubmed/34314381 http://dx.doi.org/10.18632/aging.203362 Text en Copyright: © 2021 Brunel et al. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Brunel, Aude
Hombourger, Sophie
Barthout, Elodie
Battu, Serge
Kögel, Donat
Antonietti, Patrick
Deluche, Elise
Saada, Sofiane
Durand, Stéphanie
Lalloué, Fabrice
Jauberteau, Marie-Odile
Begaud, Gaëlle
Bessette, Barbara
Verdier, Mireille
Autophagy inhibition reinforces stemness together with exit from dormancy of polydisperse glioblastoma stem cells
title Autophagy inhibition reinforces stemness together with exit from dormancy of polydisperse glioblastoma stem cells
title_full Autophagy inhibition reinforces stemness together with exit from dormancy of polydisperse glioblastoma stem cells
title_fullStr Autophagy inhibition reinforces stemness together with exit from dormancy of polydisperse glioblastoma stem cells
title_full_unstemmed Autophagy inhibition reinforces stemness together with exit from dormancy of polydisperse glioblastoma stem cells
title_short Autophagy inhibition reinforces stemness together with exit from dormancy of polydisperse glioblastoma stem cells
title_sort autophagy inhibition reinforces stemness together with exit from dormancy of polydisperse glioblastoma stem cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8351723/
https://www.ncbi.nlm.nih.gov/pubmed/34314381
http://dx.doi.org/10.18632/aging.203362
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