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Deregulation of Ion Channel and Transporter Encoding Genes in Pediatric Gliomas

Brain tumors, including the majority gliomas, are the leading cause of cancer-related death in children. World Health Organization has divided pediatric brain tumors into different grades and, based upon cDNA microarray data identifying gene expression profiles (GEPs), it has become evident in the l...

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Autores principales: Masselli, Marika, Laise, Pasquale, Tonini, Giulia, Fanelli, Duccio, Pillozzi, Serena, Cetica, Valentina, Da Ros, Martina, Sardi, Iacopo, Buccoliero, Anna Maria, Aricò, Maurizio, Genitori, Lorenzo, Becchetti, Andrea, Arcangeli, Annarosa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Research Foundation 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3362739/
https://www.ncbi.nlm.nih.gov/pubmed/22662319
http://dx.doi.org/10.3389/fonc.2012.00053
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author Masselli, Marika
Laise, Pasquale
Tonini, Giulia
Fanelli, Duccio
Pillozzi, Serena
Cetica, Valentina
Da Ros, Martina
Sardi, Iacopo
Buccoliero, Anna Maria
Aricò, Maurizio
Genitori, Lorenzo
Becchetti, Andrea
Arcangeli, Annarosa
author_facet Masselli, Marika
Laise, Pasquale
Tonini, Giulia
Fanelli, Duccio
Pillozzi, Serena
Cetica, Valentina
Da Ros, Martina
Sardi, Iacopo
Buccoliero, Anna Maria
Aricò, Maurizio
Genitori, Lorenzo
Becchetti, Andrea
Arcangeli, Annarosa
author_sort Masselli, Marika
collection PubMed
description Brain tumors, including the majority gliomas, are the leading cause of cancer-related death in children. World Health Organization has divided pediatric brain tumors into different grades and, based upon cDNA microarray data identifying gene expression profiles (GEPs), it has become evident in the last decade that the various grades involve different types of genetic alterations. However, it is not known whether ion channel and transporter genes, intimately involved in brain functioning, are associated with such GEPs. We determined the GEPs in an available cohort of 10 pediatric brain tumors initially by comparing the data obtained from four primary tumor samples and corresponding short-term cultures. The correspondence between the two types of samples was statistically significant. We then performed bioinformatic analyses on those samples (a total of nine) which corresponded to tumors of glial origin, either tissues or cell cultures, depending on the best “RNA integrity number.” We used R software to evaluate the genes which were differentially expressed (DE) in gliomas compared with normal brain. Applying a p-value below 0.01 and fold change ≥4, led to identification of 2284 DE genes. Through a Functional Annotation Analysis (FAA) using the NIH-DAVID software, the DE genes turned out to be associated mainly with: immune/inflammatory response, cell proliferation and survival, cell adhesion and motility, neuronal phenotype, and ion transport. We have shown that GEPs of pediatric brain tumors can be studied using either primary tumor samples or short-term cultures with similar results. From FAA, we concluded that, among DE genes, pediatric gliomas show a strong deregulation of genes related to ion channels and transporters.
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spelling pubmed-33627392012-06-01 Deregulation of Ion Channel and Transporter Encoding Genes in Pediatric Gliomas Masselli, Marika Laise, Pasquale Tonini, Giulia Fanelli, Duccio Pillozzi, Serena Cetica, Valentina Da Ros, Martina Sardi, Iacopo Buccoliero, Anna Maria Aricò, Maurizio Genitori, Lorenzo Becchetti, Andrea Arcangeli, Annarosa Front Oncol Oncology Brain tumors, including the majority gliomas, are the leading cause of cancer-related death in children. World Health Organization has divided pediatric brain tumors into different grades and, based upon cDNA microarray data identifying gene expression profiles (GEPs), it has become evident in the last decade that the various grades involve different types of genetic alterations. However, it is not known whether ion channel and transporter genes, intimately involved in brain functioning, are associated with such GEPs. We determined the GEPs in an available cohort of 10 pediatric brain tumors initially by comparing the data obtained from four primary tumor samples and corresponding short-term cultures. The correspondence between the two types of samples was statistically significant. We then performed bioinformatic analyses on those samples (a total of nine) which corresponded to tumors of glial origin, either tissues or cell cultures, depending on the best “RNA integrity number.” We used R software to evaluate the genes which were differentially expressed (DE) in gliomas compared with normal brain. Applying a p-value below 0.01 and fold change ≥4, led to identification of 2284 DE genes. Through a Functional Annotation Analysis (FAA) using the NIH-DAVID software, the DE genes turned out to be associated mainly with: immune/inflammatory response, cell proliferation and survival, cell adhesion and motility, neuronal phenotype, and ion transport. We have shown that GEPs of pediatric brain tumors can be studied using either primary tumor samples or short-term cultures with similar results. From FAA, we concluded that, among DE genes, pediatric gliomas show a strong deregulation of genes related to ion channels and transporters. Frontiers Research Foundation 2012-05-30 /pmc/articles/PMC3362739/ /pubmed/22662319 http://dx.doi.org/10.3389/fonc.2012.00053 Text en Copyright © 2012 Masselli, Laise, Tonini, Fanelli, Pillozzi, Cetica, Da Ros, Sardi, Buccoliero, Aricò, Genitori, Becchetti and Arcangeli. http://www.frontiersin.org/licenseagreement This is an open-access article distributed under the terms of the Creative Commons Attribution Non Commercial License, which permits non-commercial use, distribution, and reproduction in other forums, provided the original authors and source are credited.
spellingShingle Oncology
Masselli, Marika
Laise, Pasquale
Tonini, Giulia
Fanelli, Duccio
Pillozzi, Serena
Cetica, Valentina
Da Ros, Martina
Sardi, Iacopo
Buccoliero, Anna Maria
Aricò, Maurizio
Genitori, Lorenzo
Becchetti, Andrea
Arcangeli, Annarosa
Deregulation of Ion Channel and Transporter Encoding Genes in Pediatric Gliomas
title Deregulation of Ion Channel and Transporter Encoding Genes in Pediatric Gliomas
title_full Deregulation of Ion Channel and Transporter Encoding Genes in Pediatric Gliomas
title_fullStr Deregulation of Ion Channel and Transporter Encoding Genes in Pediatric Gliomas
title_full_unstemmed Deregulation of Ion Channel and Transporter Encoding Genes in Pediatric Gliomas
title_short Deregulation of Ion Channel and Transporter Encoding Genes in Pediatric Gliomas
title_sort deregulation of ion channel and transporter encoding genes in pediatric gliomas
topic Oncology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3362739/
https://www.ncbi.nlm.nih.gov/pubmed/22662319
http://dx.doi.org/10.3389/fonc.2012.00053
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