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A new role for interferon gamma in neural stem/precursor cell dysregulation

BACKGROUND: The identification of factors that compromise neurogenesis is aimed at improving stem cell-based approaches in the field of regenerative medicine. Interferon gamma (IFNγ) is a main pro-inflammatory cytokine and up-regulated during several neurological diseases. IFNγ is generally thought...

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Autores principales: Walter, Janine, Honsek, Silke D, Illes, Sebastian, Wellen, Jennifer M, Hartung, Hans-Peter, Rose, Christine R, Dihné, Marcel
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3060126/
https://www.ncbi.nlm.nih.gov/pubmed/21371330
http://dx.doi.org/10.1186/1750-1326-6-18
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author Walter, Janine
Honsek, Silke D
Illes, Sebastian
Wellen, Jennifer M
Hartung, Hans-Peter
Rose, Christine R
Dihné, Marcel
author_facet Walter, Janine
Honsek, Silke D
Illes, Sebastian
Wellen, Jennifer M
Hartung, Hans-Peter
Rose, Christine R
Dihné, Marcel
author_sort Walter, Janine
collection PubMed
description BACKGROUND: The identification of factors that compromise neurogenesis is aimed at improving stem cell-based approaches in the field of regenerative medicine. Interferon gamma (IFNγ) is a main pro-inflammatory cytokine and up-regulated during several neurological diseases. IFNγ is generally thought to beneficially enhance neurogenesis from fetal or adult neural stem/precursor cells (NSPCs). RESULTS: We now provide direct evidence to the contrary that IFNγ induces a dysfunctional stage in a substantial portion of NSPC-derived progeny in vitro characterized by simultaneous expression of glial fibrillary acid protein (GFAP) and neuronal markers, an abnormal gene expression and a functional phenotype neither typical for neurons nor for mature astrocytes. Dysfunctional development of NSPCs under the influence of IFNγ was finally demonstrated by applying the microelectrode array technology. IFNγ exposure of NSPCs during an initial 7-day proliferation period prevented the subsequent adequate differentiation and formation of functional neuronal networks. CONCLUSIONS: Our results show that immunocytochemical analyses of NSPC-derived progeny are not necessarily indicating the correct cellular phenotype specifically under inflammatory conditions and that simultaneous expression of neuronal and glial markers rather point to cellular dysregulation. We hypothesize that inhibiting the impact of IFNγ on NSPCs during neurological diseases might contribute to effective neurogenesis and regeneration.
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spelling pubmed-30601262011-03-29 A new role for interferon gamma in neural stem/precursor cell dysregulation Walter, Janine Honsek, Silke D Illes, Sebastian Wellen, Jennifer M Hartung, Hans-Peter Rose, Christine R Dihné, Marcel Mol Neurodegener Research Article BACKGROUND: The identification of factors that compromise neurogenesis is aimed at improving stem cell-based approaches in the field of regenerative medicine. Interferon gamma (IFNγ) is a main pro-inflammatory cytokine and up-regulated during several neurological diseases. IFNγ is generally thought to beneficially enhance neurogenesis from fetal or adult neural stem/precursor cells (NSPCs). RESULTS: We now provide direct evidence to the contrary that IFNγ induces a dysfunctional stage in a substantial portion of NSPC-derived progeny in vitro characterized by simultaneous expression of glial fibrillary acid protein (GFAP) and neuronal markers, an abnormal gene expression and a functional phenotype neither typical for neurons nor for mature astrocytes. Dysfunctional development of NSPCs under the influence of IFNγ was finally demonstrated by applying the microelectrode array technology. IFNγ exposure of NSPCs during an initial 7-day proliferation period prevented the subsequent adequate differentiation and formation of functional neuronal networks. CONCLUSIONS: Our results show that immunocytochemical analyses of NSPC-derived progeny are not necessarily indicating the correct cellular phenotype specifically under inflammatory conditions and that simultaneous expression of neuronal and glial markers rather point to cellular dysregulation. We hypothesize that inhibiting the impact of IFNγ on NSPCs during neurological diseases might contribute to effective neurogenesis and regeneration. BioMed Central 2011-03-03 /pmc/articles/PMC3060126/ /pubmed/21371330 http://dx.doi.org/10.1186/1750-1326-6-18 Text en Copyright ©2011 Walter et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Walter, Janine
Honsek, Silke D
Illes, Sebastian
Wellen, Jennifer M
Hartung, Hans-Peter
Rose, Christine R
Dihné, Marcel
A new role for interferon gamma in neural stem/precursor cell dysregulation
title A new role for interferon gamma in neural stem/precursor cell dysregulation
title_full A new role for interferon gamma in neural stem/precursor cell dysregulation
title_fullStr A new role for interferon gamma in neural stem/precursor cell dysregulation
title_full_unstemmed A new role for interferon gamma in neural stem/precursor cell dysregulation
title_short A new role for interferon gamma in neural stem/precursor cell dysregulation
title_sort new role for interferon gamma in neural stem/precursor cell dysregulation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3060126/
https://www.ncbi.nlm.nih.gov/pubmed/21371330
http://dx.doi.org/10.1186/1750-1326-6-18
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