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Silencing ZEB2 Induces Apoptosis and Reduces Viability in Glioblastoma Cell Lines

Background: Glioma is an aggressive type of brain tumor that originated from neuroglia cells, accounts for about 80% of all malignant brain tumors. Glioma aggressiveness has been associated with extreme cell proliferation, invasion of malignant cells, and resistance to chemotherapies. Due to resista...

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Autores principales: Safaee, Sahar, Fardi, Masoumeh, Hemmat, Nima, Khosravi, Neda, Derakhshani, Afshin, Silvestris, Nicola, Baradaran, Behzad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7916008/
https://www.ncbi.nlm.nih.gov/pubmed/33572092
http://dx.doi.org/10.3390/molecules26040901
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author Safaee, Sahar
Fardi, Masoumeh
Hemmat, Nima
Khosravi, Neda
Derakhshani, Afshin
Silvestris, Nicola
Baradaran, Behzad
author_facet Safaee, Sahar
Fardi, Masoumeh
Hemmat, Nima
Khosravi, Neda
Derakhshani, Afshin
Silvestris, Nicola
Baradaran, Behzad
author_sort Safaee, Sahar
collection PubMed
description Background: Glioma is an aggressive type of brain tumor that originated from neuroglia cells, accounts for about 80% of all malignant brain tumors. Glioma aggressiveness has been associated with extreme cell proliferation, invasion of malignant cells, and resistance to chemotherapies. Due to resistance to common therapies, glioma affected patients’ survival has not been remarkably improved. ZEB2 (SIP1) is a critical transcriptional regulator with various functions during embryonic development and wound healing that has abnormal expression in different malignancies, including brain tumors. ZEB2 overexpression in brain tumors is attributed to an unfavorable state of the malignancy. Therefore, we aimed to investigate some functions of ZEB2 in two different glioblastoma U87 and U373 cell lines. Methods: In this study, we investigated the effect of ZEB2 knocking down on the apoptosis, cell cycle, cytotoxicity, scratch test of the two malignant brain tumor cell lines U87 and U373. Besides, we investigated possible proteins and microRNA, SMAD2, SMAD5, and miR-214, which interact with ZEB2 via in situ analysis. Then we evaluated candidate gene expression after ZEB2-specific knocking down. Results: We found that ZEB2 suppression induced apoptosis in U87 and U373 cell lines. Besides, it had cytotoxic effects on both cell lines and reduced cell migration. Cell cycle analysis showed cell cycle arrest in G0/G1 and apoptosis induction in U87 and U373 cell lines receptively. Also, we have found that SAMAD2/5 expression was reduced after ZEB2-siRNA transfection and miR-214 upregulated after transfection. Conclusions: In line with previous investigations, our results indicated a critical oncogenic role for ZEB2 overexpression in brain glioma tumors. These properties make ZEB2 an essential molecule for further studies in the treatment of glioma cancer.
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spelling pubmed-79160082021-03-01 Silencing ZEB2 Induces Apoptosis and Reduces Viability in Glioblastoma Cell Lines Safaee, Sahar Fardi, Masoumeh Hemmat, Nima Khosravi, Neda Derakhshani, Afshin Silvestris, Nicola Baradaran, Behzad Molecules Article Background: Glioma is an aggressive type of brain tumor that originated from neuroglia cells, accounts for about 80% of all malignant brain tumors. Glioma aggressiveness has been associated with extreme cell proliferation, invasion of malignant cells, and resistance to chemotherapies. Due to resistance to common therapies, glioma affected patients’ survival has not been remarkably improved. ZEB2 (SIP1) is a critical transcriptional regulator with various functions during embryonic development and wound healing that has abnormal expression in different malignancies, including brain tumors. ZEB2 overexpression in brain tumors is attributed to an unfavorable state of the malignancy. Therefore, we aimed to investigate some functions of ZEB2 in two different glioblastoma U87 and U373 cell lines. Methods: In this study, we investigated the effect of ZEB2 knocking down on the apoptosis, cell cycle, cytotoxicity, scratch test of the two malignant brain tumor cell lines U87 and U373. Besides, we investigated possible proteins and microRNA, SMAD2, SMAD5, and miR-214, which interact with ZEB2 via in situ analysis. Then we evaluated candidate gene expression after ZEB2-specific knocking down. Results: We found that ZEB2 suppression induced apoptosis in U87 and U373 cell lines. Besides, it had cytotoxic effects on both cell lines and reduced cell migration. Cell cycle analysis showed cell cycle arrest in G0/G1 and apoptosis induction in U87 and U373 cell lines receptively. Also, we have found that SAMAD2/5 expression was reduced after ZEB2-siRNA transfection and miR-214 upregulated after transfection. Conclusions: In line with previous investigations, our results indicated a critical oncogenic role for ZEB2 overexpression in brain glioma tumors. These properties make ZEB2 an essential molecule for further studies in the treatment of glioma cancer. MDPI 2021-02-09 /pmc/articles/PMC7916008/ /pubmed/33572092 http://dx.doi.org/10.3390/molecules26040901 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Safaee, Sahar
Fardi, Masoumeh
Hemmat, Nima
Khosravi, Neda
Derakhshani, Afshin
Silvestris, Nicola
Baradaran, Behzad
Silencing ZEB2 Induces Apoptosis and Reduces Viability in Glioblastoma Cell Lines
title Silencing ZEB2 Induces Apoptosis and Reduces Viability in Glioblastoma Cell Lines
title_full Silencing ZEB2 Induces Apoptosis and Reduces Viability in Glioblastoma Cell Lines
title_fullStr Silencing ZEB2 Induces Apoptosis and Reduces Viability in Glioblastoma Cell Lines
title_full_unstemmed Silencing ZEB2 Induces Apoptosis and Reduces Viability in Glioblastoma Cell Lines
title_short Silencing ZEB2 Induces Apoptosis and Reduces Viability in Glioblastoma Cell Lines
title_sort silencing zeb2 induces apoptosis and reduces viability in glioblastoma cell lines
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7916008/
https://www.ncbi.nlm.nih.gov/pubmed/33572092
http://dx.doi.org/10.3390/molecules26040901
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