Glioblastomas (GBM) are the most aggressive form of primary brain tumors in humans. A key feature of malignant gliomas is their cellular heterogeneity. In particular, the presence of an undierentiated cell population of defined Glioblastoma Stem cells (GSCs) was reported. Increased expression of anti-apoptotic and chemo-resistance genes in GCSs subpopulation favors their high resistance to a broad spectrum of drugs. Our previous studies showed the ability of M2 muscarinic receptors to negatively modulate the cell growth in GBM cell lines and in the GSCs. The aim of this study was to better characterize the inhibitory eects of M2 receptors on cell proliferation and survival in GSCs and investigate the molecular mechanisms underlying the M2-mediated cell proliferation arrest and decreased survival. Moreover, we also evaluated the ability of M2 receptors to interfere with Notch1 and EGFR pathways, whose activation promotes GSCs proliferation. Our data demonstrate that M2 receptors activation impairs cell cycle progression and survival in the primary GSC lines analyzed (GB7 and GB8). Moreover, we also demonstrated the ability of M2 receptor to inhibit Notch1 and EGFR expression, highlighting a molecular interaction between M2 receptor and the Notch-1/EGFR pathways also in GSCs

Cross Interaction between M2 Muscarinic Receptor and Notch1/EGFR Pathway in Human Glioblastoma Cancer Stem Cells: Effects on Cell Cycle Progression and Survival / Cristofaro, Ilaria; Alessandrini, Francesco; Spinello, Zaira; Guerriero, Claudia; Fiore, Mario; Caffarelli, Elisa; Laneve, Pietro; Dini, Luciana; Conti, Luciano; Tata, Ada Maria. - In: CELLS. - ISSN 2073-4409. - 9:3(2020), pp. 657-673. [10.3390/cells9030657]

Cross Interaction between M2 Muscarinic Receptor and Notch1/EGFR Pathway in Human Glioblastoma Cancer Stem Cells: Effects on Cell Cycle Progression and Survival

Cristofaro, Ilaria
Writing – Original Draft Preparation
;
Alessandrini, Francesco
Investigation
;
Spinello, Zaira
Investigation
;
Guerriero, Claudia
Investigation
;
Caffarelli, Elisa
Resources
;
Laneve, Pietro
Investigation
;
Dini, Luciana
Resources
;
Conti, Luciano
Resources
;
Tata, Ada Maria
Writing – Review & Editing
2020

Abstract

Glioblastomas (GBM) are the most aggressive form of primary brain tumors in humans. A key feature of malignant gliomas is their cellular heterogeneity. In particular, the presence of an undierentiated cell population of defined Glioblastoma Stem cells (GSCs) was reported. Increased expression of anti-apoptotic and chemo-resistance genes in GCSs subpopulation favors their high resistance to a broad spectrum of drugs. Our previous studies showed the ability of M2 muscarinic receptors to negatively modulate the cell growth in GBM cell lines and in the GSCs. The aim of this study was to better characterize the inhibitory eects of M2 receptors on cell proliferation and survival in GSCs and investigate the molecular mechanisms underlying the M2-mediated cell proliferation arrest and decreased survival. Moreover, we also evaluated the ability of M2 receptors to interfere with Notch1 and EGFR pathways, whose activation promotes GSCs proliferation. Our data demonstrate that M2 receptors activation impairs cell cycle progression and survival in the primary GSC lines analyzed (GB7 and GB8). Moreover, we also demonstrated the ability of M2 receptor to inhibit Notch1 and EGFR expression, highlighting a molecular interaction between M2 receptor and the Notch-1/EGFR pathways also in GSCs
2020
cancer stem cells; M2 muscarinic receptors; EGFR; Notch; cell cycle; apoptosis
01 Pubblicazione su rivista::01a Articolo in rivista
Cross Interaction between M2 Muscarinic Receptor and Notch1/EGFR Pathway in Human Glioblastoma Cancer Stem Cells: Effects on Cell Cycle Progression and Survival / Cristofaro, Ilaria; Alessandrini, Francesco; Spinello, Zaira; Guerriero, Claudia; Fiore, Mario; Caffarelli, Elisa; Laneve, Pietro; Dini, Luciana; Conti, Luciano; Tata, Ada Maria. - In: CELLS. - ISSN 2073-4409. - 9:3(2020), pp. 657-673. [10.3390/cells9030657]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1373140
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