Astrocyte-Secreted Factors Selectively Alter Neural Stem and Progenitor Cell Proliferation in the Fragile X Mouse

An increasing body of evidence indicates that astrocytes contribute to the governance and fine tuning of stem and progenitor cell production during brain development. The effect of astrocyte function in cell production in neurodevelopment disorders is unknown. We used the Neural Colony Forming Cell...

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Main Authors: Mary eSourial, Laurie C Doering
Format: Article
Language:English
Published: Frontiers Media S.A. 2016-05-01
Series:Frontiers in Cellular Neuroscience
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fncel.2016.00126/full
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spelling doaj-bbb11e0f24e6414bad987b4f775cee4b2020-11-25T00:12:10ZengFrontiers Media S.A.Frontiers in Cellular Neuroscience1662-51022016-05-011010.3389/fncel.2016.00126190767Astrocyte-Secreted Factors Selectively Alter Neural Stem and Progenitor Cell Proliferation in the Fragile X MouseMary eSourial0Laurie C Doering1McMaster UniversityMcMaster UniversityAn increasing body of evidence indicates that astrocytes contribute to the governance and fine tuning of stem and progenitor cell production during brain development. The effect of astrocyte function in cell production in neurodevelopment disorders is unknown. We used the Neural Colony Forming Cell assay to determine the effect of astrocyte conditioned media (ACM) on the generation of neurospheres originating from either progenitor cells or functional stem cells in the knock out (KO) Fragile X mouse model. ACM from both normal and Fmr1-KO mice generated higher percentages of smaller neurospheres indicative of restricted proliferation of the progenitor cell population in Fmr1-KO brains. Wild type neurospheres, but not KO neurospheres, showed enhanced responses to ACM from the Fmr1-KO mice. In particular, Fmr1-KO ACM increased the percentage of large neurospheres generated, representative of spheres produced from neural stem cells. We also used 2D DIGE to initiate identification of the astrocyte-secreted proteins with differential expression between Fmr1-KO and WT cortices and hippocampi. The results further support the critical role of astrocytes in governing neural cell production in brain development and point to significant alterations in neural cell proliferation due to astrocyte secreted factors from the Fragile X brain.http://journal.frontiersin.org/Journal/10.3389/fncel.2016.00126/fullFragile X SyndromeneurospheresNeural stem cells (NSCs)Fmr1 knockout mice2D DIGEastrocyte-secreted factors
collection DOAJ
language English
format Article
sources DOAJ
author Mary eSourial
Laurie C Doering
spellingShingle Mary eSourial
Laurie C Doering
Astrocyte-Secreted Factors Selectively Alter Neural Stem and Progenitor Cell Proliferation in the Fragile X Mouse
Frontiers in Cellular Neuroscience
Fragile X Syndrome
neurospheres
Neural stem cells (NSCs)
Fmr1 knockout mice
2D DIGE
astrocyte-secreted factors
author_facet Mary eSourial
Laurie C Doering
author_sort Mary eSourial
title Astrocyte-Secreted Factors Selectively Alter Neural Stem and Progenitor Cell Proliferation in the Fragile X Mouse
title_short Astrocyte-Secreted Factors Selectively Alter Neural Stem and Progenitor Cell Proliferation in the Fragile X Mouse
title_full Astrocyte-Secreted Factors Selectively Alter Neural Stem and Progenitor Cell Proliferation in the Fragile X Mouse
title_fullStr Astrocyte-Secreted Factors Selectively Alter Neural Stem and Progenitor Cell Proliferation in the Fragile X Mouse
title_full_unstemmed Astrocyte-Secreted Factors Selectively Alter Neural Stem and Progenitor Cell Proliferation in the Fragile X Mouse
title_sort astrocyte-secreted factors selectively alter neural stem and progenitor cell proliferation in the fragile x mouse
publisher Frontiers Media S.A.
series Frontiers in Cellular Neuroscience
issn 1662-5102
publishDate 2016-05-01
description An increasing body of evidence indicates that astrocytes contribute to the governance and fine tuning of stem and progenitor cell production during brain development. The effect of astrocyte function in cell production in neurodevelopment disorders is unknown. We used the Neural Colony Forming Cell assay to determine the effect of astrocyte conditioned media (ACM) on the generation of neurospheres originating from either progenitor cells or functional stem cells in the knock out (KO) Fragile X mouse model. ACM from both normal and Fmr1-KO mice generated higher percentages of smaller neurospheres indicative of restricted proliferation of the progenitor cell population in Fmr1-KO brains. Wild type neurospheres, but not KO neurospheres, showed enhanced responses to ACM from the Fmr1-KO mice. In particular, Fmr1-KO ACM increased the percentage of large neurospheres generated, representative of spheres produced from neural stem cells. We also used 2D DIGE to initiate identification of the astrocyte-secreted proteins with differential expression between Fmr1-KO and WT cortices and hippocampi. The results further support the critical role of astrocytes in governing neural cell production in brain development and point to significant alterations in neural cell proliferation due to astrocyte secreted factors from the Fragile X brain.
topic Fragile X Syndrome
neurospheres
Neural stem cells (NSCs)
Fmr1 knockout mice
2D DIGE
astrocyte-secreted factors
url http://journal.frontiersin.org/Journal/10.3389/fncel.2016.00126/full
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