Identification of miRNAs contributing to neuroblastoma chemoresistance

Background: The emergence of the role of microRNAs (miRNAs) in exacerbating drug resistance of tumours is recently being highlighted as a crucial research field for future clinical management of drug resistant tumours. The purpose of this study was to identify dys-regulations in expression of indivi...

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Main Authors: Duncan Ayers, Pieter Mestdagh, Tom Van Maerken, Jo Vandesompele
Format: Article
Language:English
Published: Elsevier 2015-01-01
Series:Computational and Structural Biotechnology Journal
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2001037015000227
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spelling doaj-0f6eaad1febb4783be7bb1a0e8aa34d72020-11-24T23:24:33ZengElsevierComputational and Structural Biotechnology Journal2001-03702015-01-0113C30731910.1016/j.csbj.2015.04.003Identification of miRNAs contributing to neuroblastoma chemoresistanceDuncan Ayers0Pieter Mestdagh1Tom Van Maerken2Jo Vandesompele3Centre for Molecular Medicine and Biobanking, University of Malta, Msida, MaltaCenter for Medical Genetics Ghent, Ghent University Hospital, Ghent, BelgiumCenter for Medical Genetics Ghent, Ghent University Hospital, Ghent, BelgiumCenter for Medical Genetics Ghent, Ghent University Hospital, Ghent, BelgiumBackground: The emergence of the role of microRNAs (miRNAs) in exacerbating drug resistance of tumours is recently being highlighted as a crucial research field for future clinical management of drug resistant tumours. The purpose of this study was to identify dys-regulations in expression of individual and/or networks of miRNAs that may have direct effect on neuroblastoma (NB) drug resistance. Methods: Individual subcultures of chemosensitive SH-SY5Y and UKF-NB-3 cells were rendered chemoresistant to doxorubicin (SH-SY5Y, UKF-NB-3) or etoposide (SH-SY5Y). In each validated chemoresistance model, the parental and subcultured cell lines were analysed for miRNA expression profiling, using a high-throughput quantitative polymerase chain reaction (RT-qPCR) miRNA profiling platform for a total of 668 miRNAs. Results: A unique expression signature of miRNAs was found to be differentially expressed (higher than 2-fold change) within all three NB chemoresistance models. Four miRNAs were upregulated in the subcultured chemoresistant cell line. Three miRNAs were found to be downregulated in the chemoresistant cell lines for all models. Conclusions: Based on the initial miRNA findings, this study elucidates the dys-regulation of four miRNAs in three separate NB chemoresistant cell line models, spanning two cell lines (SH-SY5Y and UKF-NB-3) and two chemotherapeutic agents (doxorubicin and etoposide). These miRNAs may thus be possibly linked to chemoresistance induction in NB. Such miRNAs are good candidates to be novel drug targets for future miRNA based therapies against aggressive tumours that are not responding to conventional chemotherapy.http://www.sciencedirect.com/science/article/pii/S2001037015000227miRNADrugResistanceChemoresistanceNeuroblastoma
collection DOAJ
language English
format Article
sources DOAJ
author Duncan Ayers
Pieter Mestdagh
Tom Van Maerken
Jo Vandesompele
spellingShingle Duncan Ayers
Pieter Mestdagh
Tom Van Maerken
Jo Vandesompele
Identification of miRNAs contributing to neuroblastoma chemoresistance
Computational and Structural Biotechnology Journal
miRNA
Drug
Resistance
Chemoresistance
Neuroblastoma
author_facet Duncan Ayers
Pieter Mestdagh
Tom Van Maerken
Jo Vandesompele
author_sort Duncan Ayers
title Identification of miRNAs contributing to neuroblastoma chemoresistance
title_short Identification of miRNAs contributing to neuroblastoma chemoresistance
title_full Identification of miRNAs contributing to neuroblastoma chemoresistance
title_fullStr Identification of miRNAs contributing to neuroblastoma chemoresistance
title_full_unstemmed Identification of miRNAs contributing to neuroblastoma chemoresistance
title_sort identification of mirnas contributing to neuroblastoma chemoresistance
publisher Elsevier
series Computational and Structural Biotechnology Journal
issn 2001-0370
publishDate 2015-01-01
description Background: The emergence of the role of microRNAs (miRNAs) in exacerbating drug resistance of tumours is recently being highlighted as a crucial research field for future clinical management of drug resistant tumours. The purpose of this study was to identify dys-regulations in expression of individual and/or networks of miRNAs that may have direct effect on neuroblastoma (NB) drug resistance. Methods: Individual subcultures of chemosensitive SH-SY5Y and UKF-NB-3 cells were rendered chemoresistant to doxorubicin (SH-SY5Y, UKF-NB-3) or etoposide (SH-SY5Y). In each validated chemoresistance model, the parental and subcultured cell lines were analysed for miRNA expression profiling, using a high-throughput quantitative polymerase chain reaction (RT-qPCR) miRNA profiling platform for a total of 668 miRNAs. Results: A unique expression signature of miRNAs was found to be differentially expressed (higher than 2-fold change) within all three NB chemoresistance models. Four miRNAs were upregulated in the subcultured chemoresistant cell line. Three miRNAs were found to be downregulated in the chemoresistant cell lines for all models. Conclusions: Based on the initial miRNA findings, this study elucidates the dys-regulation of four miRNAs in three separate NB chemoresistant cell line models, spanning two cell lines (SH-SY5Y and UKF-NB-3) and two chemotherapeutic agents (doxorubicin and etoposide). These miRNAs may thus be possibly linked to chemoresistance induction in NB. Such miRNAs are good candidates to be novel drug targets for future miRNA based therapies against aggressive tumours that are not responding to conventional chemotherapy.
topic miRNA
Drug
Resistance
Chemoresistance
Neuroblastoma
url http://www.sciencedirect.com/science/article/pii/S2001037015000227
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