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Novel association between microglia and stem cells in human gliomas: A contributor to tumour proliferation?

Brain tumour stem cells and microglia both promote the growth of astrocytomas, the commonest form of primary brain tumour, with recent emerging evidence that these cell types may interact in glioma models. It is unclear whether microglia and stem cells are associated in human gliomas. To investigate...

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Autores principales: Noorani, Imran, Petty, Gareth, Grundy, Paul L, Sharpe, Geoff, Willaime‐Morawek, Sandrine, Harris, Scott, Thomas, Gareth J, Nicoll, James AR, Boche, Delphine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4858136/
https://www.ncbi.nlm.nih.gov/pubmed/27499894
http://dx.doi.org/10.1002/cjp2.7
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author Noorani, Imran
Petty, Gareth
Grundy, Paul L
Sharpe, Geoff
Willaime‐Morawek, Sandrine
Harris, Scott
Thomas, Gareth J
Nicoll, James AR
Boche, Delphine
author_facet Noorani, Imran
Petty, Gareth
Grundy, Paul L
Sharpe, Geoff
Willaime‐Morawek, Sandrine
Harris, Scott
Thomas, Gareth J
Nicoll, James AR
Boche, Delphine
author_sort Noorani, Imran
collection PubMed
description Brain tumour stem cells and microglia both promote the growth of astrocytomas, the commonest form of primary brain tumour, with recent emerging evidence that these cell types may interact in glioma models. It is unclear whether microglia and stem cells are associated in human gliomas. To investigate this question, we used the technique of tissue microarrays to perform a correlative study of a large number of tumour samples. We quantified immunostaining of human astrocytic tumour tissue microarrays (86 patients; World Health Organisation grade II–IV) for microglia Ionized calcium binding adaptor molecule 1 (Iba1) and CD68, and stem cell nestin, SOX2 and CD133. Ki67 was used to assess proliferation and GFAP for astrocytic differentiation. Immunoreactivity for both microglial markers and stem cell markers nestin and SOX2 significantly increased with increasing tumour grade. GFAP was higher in low grade astrocytomas. There was a positive correlation between: (i) both microglial markers and nestin and CD133, (ii) nestin and tumour cell proliferation Ki67 and (iii) both microglial markers and Ki67. SOX2 was not associated with microglia or tumour proliferation. To test the clinical relevance, we investigated the putative association of these markers with clinical outcomes. High expression for nestin and Iba1 correlated with significantly shorter survival times, and high expression for nestin, Iba1, CD68 and Ki67 was associated with faster tumour progression on univariate analysis. On multivariate analysis, nestin, CD133 and Ki67 remained significant predictors of poorer survival, after adjustment for other markers. These results confirm previous in vitro findings, demonstrating their functional relevance as a therapeutic target in humans. This is the first report of a novel correlation between microglia and stem cells that may drive human astrocytic tumour development.
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spelling pubmed-48581362016-08-05 Novel association between microglia and stem cells in human gliomas: A contributor to tumour proliferation? Noorani, Imran Petty, Gareth Grundy, Paul L Sharpe, Geoff Willaime‐Morawek, Sandrine Harris, Scott Thomas, Gareth J Nicoll, James AR Boche, Delphine J Pathol Clin Res Original Articles Brain tumour stem cells and microglia both promote the growth of astrocytomas, the commonest form of primary brain tumour, with recent emerging evidence that these cell types may interact in glioma models. It is unclear whether microglia and stem cells are associated in human gliomas. To investigate this question, we used the technique of tissue microarrays to perform a correlative study of a large number of tumour samples. We quantified immunostaining of human astrocytic tumour tissue microarrays (86 patients; World Health Organisation grade II–IV) for microglia Ionized calcium binding adaptor molecule 1 (Iba1) and CD68, and stem cell nestin, SOX2 and CD133. Ki67 was used to assess proliferation and GFAP for astrocytic differentiation. Immunoreactivity for both microglial markers and stem cell markers nestin and SOX2 significantly increased with increasing tumour grade. GFAP was higher in low grade astrocytomas. There was a positive correlation between: (i) both microglial markers and nestin and CD133, (ii) nestin and tumour cell proliferation Ki67 and (iii) both microglial markers and Ki67. SOX2 was not associated with microglia or tumour proliferation. To test the clinical relevance, we investigated the putative association of these markers with clinical outcomes. High expression for nestin and Iba1 correlated with significantly shorter survival times, and high expression for nestin, Iba1, CD68 and Ki67 was associated with faster tumour progression on univariate analysis. On multivariate analysis, nestin, CD133 and Ki67 remained significant predictors of poorer survival, after adjustment for other markers. These results confirm previous in vitro findings, demonstrating their functional relevance as a therapeutic target in humans. This is the first report of a novel correlation between microglia and stem cells that may drive human astrocytic tumour development. John Wiley and Sons Inc. 2015-01-14 /pmc/articles/PMC4858136/ /pubmed/27499894 http://dx.doi.org/10.1002/cjp2.7 Text en © 2015 John Wiley and Sons Ltd and The Pathological Society of Great Britain and Ireland This is an open access article under the terms of the Creative Commons Attribution‐NonCommercial‐NoDerivs (http://creativecommons.org/licenses/by-nc-nd/3.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Original Articles
Noorani, Imran
Petty, Gareth
Grundy, Paul L
Sharpe, Geoff
Willaime‐Morawek, Sandrine
Harris, Scott
Thomas, Gareth J
Nicoll, James AR
Boche, Delphine
Novel association between microglia and stem cells in human gliomas: A contributor to tumour proliferation?
title Novel association between microglia and stem cells in human gliomas: A contributor to tumour proliferation?
title_full Novel association between microglia and stem cells in human gliomas: A contributor to tumour proliferation?
title_fullStr Novel association between microglia and stem cells in human gliomas: A contributor to tumour proliferation?
title_full_unstemmed Novel association between microglia and stem cells in human gliomas: A contributor to tumour proliferation?
title_short Novel association between microglia and stem cells in human gliomas: A contributor to tumour proliferation?
title_sort novel association between microglia and stem cells in human gliomas: a contributor to tumour proliferation?
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4858136/
https://www.ncbi.nlm.nih.gov/pubmed/27499894
http://dx.doi.org/10.1002/cjp2.7
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